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Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001/*
2 * Copyright (c) 1991, 1992 Paul Kranenburg <pk@cs.few.eur.nl>
3 * Copyright (c) 1993 Branko Lankester <branko@hacktic.nl>
4 * Copyright (c) 1993, 1994, 1995, 1996 Rick Sladkey <jrs@world.std.com>
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00005 * Copyright (c) 1996-1999 Wichert Akkerman <wichert@cistron.nl>
6 * Copyright (c) 1999 IBM Deutschland Entwicklung GmbH, IBM Corporation
7 * Linux for s390 port by D.J. Barrow
8 * <barrow_dj@mail.yahoo.com,djbarrow@de.ibm.com>
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00009 * All rights reserved.
10 *
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
13 * are met:
14 * 1. Redistributions of source code must retain the above copyright
15 * notice, this list of conditions and the following disclaimer.
16 * 2. Redistributions in binary form must reproduce the above copyright
17 * notice, this list of conditions and the following disclaimer in the
18 * documentation and/or other materials provided with the distribution.
19 * 3. The name of the author may not be used to endorse or promote products
20 * derived from this software without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 *
33 * $Id$
34 */
35
36#include "defs.h"
37
38#include <signal.h>
39#include <time.h>
40#include <errno.h>
41#include <sys/user.h>
42#include <sys/syscall.h>
43#include <sys/param.h>
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000044
Wichert Akkerman15dea971999-10-06 13:06:34 +000045#if HAVE_ASM_REG_H
Wichert Akkerman00a82ee2001-03-28 20:29:17 +000046#ifdef SPARC
47# define fpq kernel_fpq
48# define fq kernel_fq
49# define fpu kernel_fpu
50#endif
Wichert Akkerman9ce1a631999-08-29 23:15:07 +000051#include <asm/reg.h>
Wichert Akkerman00a82ee2001-03-28 20:29:17 +000052#ifdef SPARC
53# undef fpq
54# undef fq
Roland McGrath761b5d72002-12-15 23:58:31 +000055# undef fpu
Wichert Akkerman00a82ee2001-03-28 20:29:17 +000056#endif
Wichert Akkerman9ce1a631999-08-29 23:15:07 +000057#endif
58
Wichert Akkerman15dea971999-10-06 13:06:34 +000059#ifdef HAVE_SYS_REG_H
60#include <sys/reg.h>
61#ifndef PTRACE_PEEKUSR
62# define PTRACE_PEEKUSR PTRACE_PEEKUSER
63#endif
Wichert Akkermanfaf72222000-02-19 23:59:03 +000064#elif defined(HAVE_LINUX_PTRACE_H)
65#undef PTRACE_SYSCALL
Roland McGrathce9f0742004-03-01 21:29:22 +000066# ifdef HAVE_STRUCT_IA64_FPREG
67# define ia64_fpreg XXX_ia64_fpreg
68# endif
69# ifdef HAVE_STRUCT_PT_ALL_USER_REGS
70# define pt_all_user_regs XXX_pt_all_user_regs
71# endif
Wichert Akkermanfaf72222000-02-19 23:59:03 +000072#include <linux/ptrace.h>
Roland McGrathce9f0742004-03-01 21:29:22 +000073# undef ia64_fpreg
74# undef pt_all_user_regs
Wichert Akkerman15dea971999-10-06 13:06:34 +000075#endif
76
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +000077#if defined(LINUX) && defined(IA64)
78# include <asm/ptrace_offsets.h>
79# include <asm/rse.h>
80#endif
81
Pavel Machekd8ae7e32000-02-01 17:17:25 +000082#define NR_SYSCALL_BASE 0
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000083#ifdef LINUX
84#ifndef ERESTARTSYS
85#define ERESTARTSYS 512
86#endif
87#ifndef ERESTARTNOINTR
88#define ERESTARTNOINTR 513
89#endif
90#ifndef ERESTARTNOHAND
91#define ERESTARTNOHAND 514 /* restart if no handler.. */
92#endif
93#ifndef ENOIOCTLCMD
94#define ENOIOCTLCMD 515 /* No ioctl command */
95#endif
Roland McGrath9c555e72003-07-09 09:47:59 +000096#ifndef ERESTART_RESTARTBLOCK
97#define ERESTART_RESTARTBLOCK 516 /* restart by calling sys_restart_syscall */
98#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000099#ifndef NSIG
100#define NSIG 32
101#endif
102#ifdef ARM
103#undef NSIG
104#define NSIG 32
Pavel Machekd8ae7e32000-02-01 17:17:25 +0000105#undef NR_SYSCALL_BASE
106#define NR_SYSCALL_BASE __NR_SYSCALL_BASE
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000107#endif
108#endif /* LINUX */
109
110#include "syscall.h"
111
112/* Define these shorthand notations to simplify the syscallent files. */
113#define TF TRACE_FILE
114#define TI TRACE_IPC
115#define TN TRACE_NETWORK
116#define TP TRACE_PROCESS
117#define TS TRACE_SIGNAL
118
119struct sysent sysent0[] = {
120#include "syscallent.h"
121};
122int nsyscalls0 = sizeof sysent0 / sizeof sysent0[0];
123
124#if SUPPORTED_PERSONALITIES >= 2
125struct sysent sysent1[] = {
126#include "syscallent1.h"
127};
128int nsyscalls1 = sizeof sysent1 / sizeof sysent1[0];
129#endif /* SUPPORTED_PERSONALITIES >= 2 */
130
131#if SUPPORTED_PERSONALITIES >= 3
132struct sysent sysent2[] = {
133#include "syscallent2.h"
134};
135int nsyscalls2 = sizeof sysent2 / sizeof sysent2[0];
136#endif /* SUPPORTED_PERSONALITIES >= 3 */
137
138struct sysent *sysent;
139int nsyscalls;
140
141/* Now undef them since short defines cause wicked namespace pollution. */
142#undef TF
143#undef TI
144#undef TN
145#undef TP
146#undef TS
147
148char *errnoent0[] = {
149#include "errnoent.h"
150};
151int nerrnos0 = sizeof errnoent0 / sizeof errnoent0[0];
152
153#if SUPPORTED_PERSONALITIES >= 2
154char *errnoent1[] = {
155#include "errnoent1.h"
156};
157int nerrnos1 = sizeof errnoent1 / sizeof errnoent1[0];
158#endif /* SUPPORTED_PERSONALITIES >= 2 */
159
160#if SUPPORTED_PERSONALITIES >= 3
161char *errnoent2[] = {
162#include "errnoent2.h"
163};
164int nerrnos2 = sizeof errnoent2 / sizeof errnoent2[0];
165#endif /* SUPPORTED_PERSONALITIES >= 3 */
166
167char **errnoent;
168int nerrnos;
169
170int current_personality;
171
172int
Wichert Akkermane6f876c1999-06-22 15:28:30 +0000173set_personality(personality)
174int personality;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000175{
176 switch (personality) {
177 case 0:
178 errnoent = errnoent0;
179 nerrnos = nerrnos0;
180 sysent = sysent0;
181 nsyscalls = nsyscalls0;
182 ioctlent = ioctlent0;
183 nioctlents = nioctlents0;
184 signalent = signalent0;
185 nsignals = nsignals0;
186 break;
187
188#if SUPPORTED_PERSONALITIES >= 2
189 case 1:
190 errnoent = errnoent1;
191 nerrnos = nerrnos1;
192 sysent = sysent1;
193 nsyscalls = nsyscalls1;
194 ioctlent = ioctlent1;
195 nioctlents = nioctlents1;
196 signalent = signalent1;
197 nsignals = nsignals1;
198 break;
199#endif /* SUPPORTED_PERSONALITIES >= 2 */
200
201#if SUPPORTED_PERSONALITIES >= 3
202 case 2:
203 errnoent = errnoent2;
204 nerrnos = nerrnos2;
205 sysent = sysent2;
206 nsyscalls = nsyscalls2;
207 ioctlent = ioctlent2;
208 nioctlents = nioctlents2;
209 signalent = signalent2;
210 nsignals = nsignals2;
211 break;
212#endif /* SUPPORTED_PERSONALITIES >= 3 */
213
214 default:
215 return -1;
216 }
217
218 current_personality = personality;
219 return 0;
220}
221
222int qual_flags[MAX_QUALS];
223
224static int call_count[MAX_QUALS];
225static int error_count[MAX_QUALS];
226static struct timeval tv_count[MAX_QUALS];
227static int sorted_count[MAX_QUALS];
228
229static struct timeval shortest = { 1000000, 0 };
230
Roland McGrath9797ceb2002-12-30 10:23:00 +0000231static int qual_syscall(), qual_signal(), qual_fault(), qual_desc();
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000232
233static struct qual_options {
234 int bitflag;
235 char *option_name;
Roland McGrath9797ceb2002-12-30 10:23:00 +0000236 int (*qualify)();
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000237 char *argument_name;
238} qual_options[] = {
Roland McGrath9797ceb2002-12-30 10:23:00 +0000239 { QUAL_TRACE, "trace", qual_syscall, "system call" },
240 { QUAL_TRACE, "t", qual_syscall, "system call" },
241 { QUAL_ABBREV, "abbrev", qual_syscall, "system call" },
242 { QUAL_ABBREV, "a", qual_syscall, "system call" },
243 { QUAL_VERBOSE, "verbose", qual_syscall, "system call" },
244 { QUAL_VERBOSE, "v", qual_syscall, "system call" },
245 { QUAL_RAW, "raw", qual_syscall, "system call" },
246 { QUAL_RAW, "x", qual_syscall, "system call" },
247 { QUAL_SIGNAL, "signal", qual_signal, "signal" },
248 { QUAL_SIGNAL, "signals", qual_signal, "signal" },
249 { QUAL_SIGNAL, "s", qual_signal, "signal" },
250 { QUAL_FAULT, "fault", qual_fault, "fault" },
251 { QUAL_FAULT, "faults", qual_fault, "fault" },
252 { QUAL_FAULT, "m", qual_fault, "fault" },
253 { QUAL_READ, "read", qual_desc, "descriptor" },
254 { QUAL_READ, "reads", qual_desc, "descriptor" },
255 { QUAL_READ, "r", qual_desc, "descriptor" },
256 { QUAL_WRITE, "write", qual_desc, "descriptor" },
257 { QUAL_WRITE, "writes", qual_desc, "descriptor" },
258 { QUAL_WRITE, "w", qual_desc, "descriptor" },
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000259 { 0, NULL, NULL, NULL },
260};
261
Roland McGrath9797ceb2002-12-30 10:23:00 +0000262static void
263qualify_one(n, opt, not)
264 int n;
265 struct qual_options *opt;
266 int not;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000267{
Roland McGrath9797ceb2002-12-30 10:23:00 +0000268 if (not)
269 qual_flags[n] &= ~opt->bitflag;
270 else
271 qual_flags[n] |= opt->bitflag;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000272}
273
274static int
Roland McGrath9797ceb2002-12-30 10:23:00 +0000275qual_syscall(s, opt, not)
276 char *s;
277 struct qual_options *opt;
278 int not;
279{
280 int i;
281 int any = 0;
282
283 for (i = 0; i < nsyscalls; i++) {
284 if (strcmp(s, sysent[i].sys_name) == 0) {
285 qualify_one(i, opt, not);
286 any = 1;
287 }
288 }
289 return !any;
290}
291
292static int
293qual_signal(s, opt, not)
294 char *s;
295 struct qual_options *opt;
296 int not;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000297{
298 int i;
299 char buf[32];
300
Roland McGrath9797ceb2002-12-30 10:23:00 +0000301 if (s && *s && isdigit((unsigned char)*s)) {
302 qualify_one(atoi(s), opt, not);
303 return 1;
304 }
Roland McGrathd62b6712004-03-02 06:52:01 +0000305 if (strlen(s) >= sizeof buf)
306 return 0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000307 strcpy(buf, s);
308 s = buf;
309 for (i = 0; s[i]; i++)
Wichert Akkerman2ee6e452000-02-18 15:36:12 +0000310 s[i] = toupper((unsigned char)(s[i]));
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000311 if (strncmp(s, "SIG", 3) == 0)
312 s += 3;
Roland McGrath9797ceb2002-12-30 10:23:00 +0000313 for (i = 0; i <= NSIG; i++)
314 if (strcmp(s, signame(i) + 3) == 0) {
315 qualify_one(atoi(s), opt, not);
316 return 1;
317 }
318 return 0;
319}
320
321static int
322qual_fault(s, opt, not)
323 char *s;
324 struct qual_options *opt;
325 int not;
326{
327 return -1;
328}
329
330static int
331qual_desc(s, opt, not)
332 char *s;
333 struct qual_options *opt;
334 int not;
335{
336 if (s && *s && isdigit((unsigned char)*s)) {
337 qualify_one(atoi(s), opt, not);
Roland McGrath2b619022003-04-10 18:58:20 +0000338 return 0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000339 }
340 return -1;
341}
342
343static int
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000344lookup_class(s)
Roland McGrath9797ceb2002-12-30 10:23:00 +0000345 char *s;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000346{
347 if (strcmp(s, "file") == 0)
348 return TRACE_FILE;
349 if (strcmp(s, "ipc") == 0)
350 return TRACE_IPC;
351 if (strcmp(s, "network") == 0)
352 return TRACE_NETWORK;
353 if (strcmp(s, "process") == 0)
354 return TRACE_PROCESS;
355 if (strcmp(s, "signal") == 0)
356 return TRACE_SIGNAL;
357 return -1;
358}
359
360void
361qualify(s)
362char *s;
363{
364 struct qual_options *opt;
365 int not;
366 char *p;
367 int i, n;
368
369 opt = &qual_options[0];
370 for (i = 0; (p = qual_options[i].option_name); i++) {
371 n = strlen(p);
372 if (strncmp(s, p, n) == 0 && s[n] == '=') {
373 opt = &qual_options[i];
374 s += n + 1;
375 break;
376 }
377 }
378 not = 0;
379 if (*s == '!') {
380 not = 1;
381 s++;
382 }
383 if (strcmp(s, "none") == 0) {
384 not = 1 - not;
385 s = "all";
386 }
387 if (strcmp(s, "all") == 0) {
388 for (i = 0; i < MAX_QUALS; i++) {
389 if (not)
390 qual_flags[i] &= ~opt->bitflag;
391 else
392 qual_flags[i] |= opt->bitflag;
393 }
394 return;
395 }
396 for (i = 0; i < MAX_QUALS; i++) {
397 if (not)
398 qual_flags[i] |= opt->bitflag;
399 else
400 qual_flags[i] &= ~opt->bitflag;
401 }
402 for (p = strtok(s, ","); p; p = strtok(NULL, ",")) {
403 if (opt->bitflag == QUAL_TRACE && (n = lookup_class(p)) > 0) {
404 for (i = 0; i < MAX_QUALS; i++) {
405 if (sysent[i].sys_flags & n) {
406 if (not)
407 qual_flags[i] &= ~opt->bitflag;
408 else
409 qual_flags[i] |= opt->bitflag;
410 }
411 }
412 continue;
413 }
Roland McGrath9797ceb2002-12-30 10:23:00 +0000414 if (opt->qualify(p, opt, not)) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000415 fprintf(stderr, "strace: invalid %s `%s'\n",
416 opt->argument_name, p);
417 exit(1);
418 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000419 }
420 return;
421}
422
423static void
424dumpio(tcp)
425struct tcb *tcp;
426{
427 if (syserror(tcp))
428 return;
429 if (tcp->u_arg[0] < 0 || tcp->u_arg[0] >= MAX_QUALS)
430 return;
Pavel Machekd8ae7e32000-02-01 17:17:25 +0000431 switch (tcp->scno + NR_SYSCALL_BASE) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000432 case SYS_read:
433#ifdef SYS_recv
434 case SYS_recv:
435#endif
436#ifdef SYS_recvfrom
437 case SYS_recvfrom:
438#endif
439 if (qual_flags[tcp->u_arg[0]] & QUAL_READ)
440 dumpstr(tcp, tcp->u_arg[1], tcp->u_rval);
441 break;
442 case SYS_write:
443#ifdef SYS_send
444 case SYS_send:
445#endif
446#ifdef SYS_sendto
447 case SYS_sendto:
448#endif
449 if (qual_flags[tcp->u_arg[0]] & QUAL_WRITE)
450 dumpstr(tcp, tcp->u_arg[1], tcp->u_arg[2]);
451 break;
John Hughes1d08dcf2001-07-10 13:48:44 +0000452#ifdef SYS_readv
453 case SYS_readv:
454 if (qual_flags[tcp->u_arg[0]] & QUAL_READ)
455 dumpiov(tcp, tcp->u_arg[2], tcp->u_arg[1]);
456 break;
457#endif
458#ifdef SYS_writev
459 case SYS_writev:
460
461 if (qual_flags[tcp->u_arg[0]] & QUAL_WRITE)
462 dumpiov(tcp, tcp->u_arg[2], tcp->u_arg[1]);
463 break;
464#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000465 }
466}
467
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000468#ifndef FREEBSD
Wichert Akkerman8829a551999-06-11 13:18:40 +0000469enum subcall_style { shift_style, deref_style, mask_style, door_style };
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000470#else /* FREEBSD */
471enum subcall_style { shift_style, deref_style, mask_style, door_style, table_style };
472
473struct subcall {
474 int call;
475 int nsubcalls;
476 int subcalls[5];
477};
478
479const struct subcall subcalls_table[] = {
480 { SYS_shmsys, 5, { SYS_shmat, SYS_shmctl, SYS_shmdt, SYS_shmget, SYS_shmctl } },
John Hughes61eeb552001-03-06 15:51:53 +0000481#ifdef SYS_semconfig
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000482 { SYS_semsys, 4, { SYS___semctl, SYS_semget, SYS_semop, SYS_semconfig } },
John Hughes61eeb552001-03-06 15:51:53 +0000483#else
484 { SYS_semsys, 3, { SYS___semctl, SYS_semget, SYS_semop } },
485#endif
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000486 { SYS_msgsys, 4, { SYS_msgctl, SYS_msgget, SYS_msgsnd, SYS_msgrcv } },
487};
488#endif /* FREEBSD */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000489
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000490#if !(defined(LINUX) && ( defined(ALPHA) || defined(MIPS) ))
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000491
492const int socket_map [] = {
493 /* SYS_SOCKET */ 97,
494 /* SYS_BIND */ 104,
495 /* SYS_CONNECT */ 98,
496 /* SYS_LISTEN */ 106,
497 /* SYS_ACCEPT */ 99,
498 /* SYS_GETSOCKNAME */ 150,
499 /* SYS_GETPEERNAME */ 141,
500 /* SYS_SOCKETPAIR */ 135,
501 /* SYS_SEND */ 101,
502 /* SYS_RECV */ 102,
503 /* SYS_SENDTO */ 133,
504 /* SYS_RECVFROM */ 125,
505 /* SYS_SHUTDOWN */ 134,
506 /* SYS_SETSOCKOPT */ 105,
507 /* SYS_GETSOCKOPT */ 118,
508 /* SYS_SENDMSG */ 114,
509 /* SYS_RECVMSG */ 113
510};
511
512void
Wichert Akkermane6f876c1999-06-22 15:28:30 +0000513sparc_socket_decode (tcp)
514struct tcb *tcp;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000515{
516 volatile long addr;
517 volatile int i, n;
518
519 if (tcp->u_arg [0] < 1 || tcp->u_arg [0] > sizeof(socket_map)/sizeof(int)+1){
520 return;
521 }
522 tcp->scno = socket_map [tcp->u_arg [0]-1];
523 n = tcp->u_nargs = sysent [tcp->scno].nargs;
524 addr = tcp->u_arg [1];
525 for (i = 0; i < n; i++){
526 int arg;
527 if (umoven (tcp, addr, sizeof (arg), (void *) &arg) < 0)
528 arg = 0;
529 tcp->u_arg [i] = arg;
530 addr += sizeof (arg);
531 }
532}
533
Michal Ludvig0e035502002-09-23 15:41:01 +0000534void
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000535decode_subcall(tcp, subcall, nsubcalls, style)
536struct tcb *tcp;
537int subcall;
538int nsubcalls;
539enum subcall_style style;
540{
Michal Ludvig10a88d02002-10-07 14:31:00 +0000541 long addr, mask, arg;
542 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000543
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000544 switch (style) {
545 case shift_style:
Wichert Akkerman16a03d22000-08-10 02:14:04 +0000546 if (tcp->u_arg[0] < 0 || tcp->u_arg[0] >= nsubcalls)
547 return;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000548 tcp->scno = subcall + tcp->u_arg[0];
549 if (sysent[tcp->scno].nargs != -1)
550 tcp->u_nargs = sysent[tcp->scno].nargs;
551 else
552 tcp->u_nargs--;
553 for (i = 0; i < tcp->u_nargs; i++)
554 tcp->u_arg[i] = tcp->u_arg[i + 1];
555 break;
556 case deref_style:
Wichert Akkerman16a03d22000-08-10 02:14:04 +0000557 if (tcp->u_arg[0] < 0 || tcp->u_arg[0] >= nsubcalls)
558 return;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000559 tcp->scno = subcall + tcp->u_arg[0];
560 addr = tcp->u_arg[1];
561 for (i = 0; i < sysent[tcp->scno].nargs; i++) {
562 if (umove(tcp, addr, &arg) < 0)
563 arg = 0;
564 tcp->u_arg[i] = arg;
565 addr += sizeof(arg);
566 }
567 tcp->u_nargs = sysent[tcp->scno].nargs;
568 break;
569 case mask_style:
570 mask = (tcp->u_arg[0] >> 8) & 0xff;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000571 for (i = 0; mask; i++)
572 mask >>= 1;
Wichert Akkerman16a03d22000-08-10 02:14:04 +0000573 if (i >= nsubcalls)
574 return;
575 tcp->u_arg[0] &= 0xff;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000576 tcp->scno = subcall + i;
577 if (sysent[tcp->scno].nargs != -1)
578 tcp->u_nargs = sysent[tcp->scno].nargs;
579 break;
Wichert Akkerman8829a551999-06-11 13:18:40 +0000580 case door_style:
581 /*
582 * Oh, yuck. The call code is the *sixth* argument.
Wichert Akkerman16a03d22000-08-10 02:14:04 +0000583 * (don't you mean the *last* argument? - JH)
Wichert Akkerman8829a551999-06-11 13:18:40 +0000584 */
Wichert Akkerman16a03d22000-08-10 02:14:04 +0000585 if (tcp->u_arg[5] < 0 || tcp->u_arg[5] >= nsubcalls)
586 return;
Wichert Akkerman8829a551999-06-11 13:18:40 +0000587 tcp->scno = subcall + tcp->u_arg[5];
588 if (sysent[tcp->scno].nargs != -1)
589 tcp->u_nargs = sysent[tcp->scno].nargs;
590 else
591 tcp->u_nargs--;
592 break;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000593#ifdef FREEBSD
594 case table_style:
595 for (i = 0; i < sizeof(subcalls_table) / sizeof(struct subcall); i++)
596 if (subcalls_table[i].call == tcp->scno) break;
597 if (i < sizeof(subcalls_table) / sizeof(struct subcall) &&
598 tcp->u_arg[0] >= 0 && tcp->u_arg[0] < subcalls_table[i].nsubcalls) {
599 tcp->scno = subcalls_table[i].subcalls[tcp->u_arg[0]];
600 for (i = 0; i < tcp->u_nargs; i++)
601 tcp->u_arg[i] = tcp->u_arg[i + 1];
602 }
603 break;
604#endif /* FREEBSD */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000605 }
606}
607#endif
608
609struct tcb *tcp_last = NULL;
610
611static int
612internal_syscall(tcp)
613struct tcb *tcp;
614{
615 /*
616 * We must always trace a few critical system calls in order to
617 * correctly support following forks in the presence of tracing
618 * qualifiers.
619 */
Pavel Machekd8ae7e32000-02-01 17:17:25 +0000620 switch (tcp->scno + NR_SYSCALL_BASE) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000621#ifdef SYS_fork
622 case SYS_fork:
623#endif
624#ifdef SYS_vfork
625 case SYS_vfork:
626#endif
John Hughes4e36a812001-04-18 15:11:51 +0000627#ifdef SYS_fork1
628 case SYS_fork1:
629#endif
630#ifdef SYS_forkall
631 case SYS_forkall:
632#endif
633#ifdef SYS_rfork1
634 case SYS_rfork1:
635#endif
636#ifdef SYS_rforkall
637 case SYS_rforkall:
638#endif
Roland McGrathf3a0e1b2003-02-20 02:45:22 +0000639#ifdef SYS_rfork
640 case SYS_rfork:
641#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000642 internal_fork(tcp);
643 break;
Wichert Akkerman7a0b6491999-12-23 15:08:17 +0000644#ifdef SYS_clone
645 case SYS_clone:
646 internal_clone(tcp);
647 break;
648#endif
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000649#ifdef SYS_clone2
650 case SYS_clone2:
651 internal_clone(tcp);
652 break;
653#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000654#ifdef SYS_execv
655 case SYS_execv:
656#endif
657#ifdef SYS_execve
658 case SYS_execve:
659#endif
John Hughes4e36a812001-04-18 15:11:51 +0000660#ifdef SYS_rexecve
661 case SYS_rexecve:
662#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000663 internal_exec(tcp);
664 break;
665
666#ifdef SYS_wait
667 case SYS_wait:
668#endif
669#ifdef SYS_wait4
670 case SYS_wait4:
671#endif
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000672#ifdef SYS32_wait4
673 case SYS32_wait4:
674#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000675#ifdef SYS_waitpid
676 case SYS_waitpid:
677#endif
678#ifdef SYS_waitsys
679 case SYS_waitsys:
680#endif
681 internal_wait(tcp);
682 break;
683
684#ifdef SYS_exit
685 case SYS_exit:
686#endif
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000687#ifdef SYS32_exit
688 case SYS32_exit:
689#endif
Roland McGrath923f7502003-01-09 06:53:27 +0000690#ifdef __NR_exit_group
691 case __NR_exit_group:
692#endif
Roland McGrath08267b82004-02-20 22:56:43 +0000693#ifdef IA64
694 case 252: /* IA-32 __NR_exit_group */
695#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000696 internal_exit(tcp);
697 break;
698 }
699 return 0;
700}
701
Wichert Akkermanc7926982000-04-10 22:22:31 +0000702
703#ifdef LINUX
704#if defined (I386)
705 static long eax;
706#elif defined (IA64)
707 long r8, r10, psr;
708 long ia32 = 0;
709#elif defined (POWERPC)
710 static long result,flags;
711#elif defined (M68K)
712 static int d0;
713#elif defined (ARM)
Roland McGrath0f87c492003-06-03 23:29:04 +0000714 static struct pt_regs regs;
Wichert Akkermanc7926982000-04-10 22:22:31 +0000715#elif defined (ALPHA)
716 static long r0;
717 static long a3;
718#elif defined (SPARC)
Wichert Akkerman00a82ee2001-03-28 20:29:17 +0000719 static struct regs regs;
Wichert Akkermanc7926982000-04-10 22:22:31 +0000720 static unsigned long trap;
721#elif defined(MIPS)
722 static long a3;
723 static long r2;
Michal Ludvig10a88d02002-10-07 14:31:00 +0000724#elif defined(S390) || defined(S390X)
Wichert Akkermanc7926982000-04-10 22:22:31 +0000725 static long gpr2;
726 static long pc;
Michal Ludvig882eda82002-11-11 12:50:47 +0000727 static long syscall_mode;
Wichert Akkermanc1652e22001-03-27 12:17:16 +0000728#elif defined(HPPA)
729 static long r28;
Wichert Akkermanccef6372002-05-01 16:39:22 +0000730#elif defined(SH)
731 static long r0;
Roland McGrathf5a47772003-06-26 22:40:42 +0000732#elif defined(SH64)
Roland McGrath0f87c492003-06-03 23:29:04 +0000733 static long r9;
Michal Ludvig0e035502002-09-23 15:41:01 +0000734#elif defined(X86_64)
735 static long rax;
Roland McGrath761b5d72002-12-15 23:58:31 +0000736#endif
Wichert Akkermanc7926982000-04-10 22:22:31 +0000737#endif /* LINUX */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000738#ifdef FREEBSD
739 struct reg regs;
Roland McGrath761b5d72002-12-15 23:58:31 +0000740#endif /* FREEBSD */
Wichert Akkermanc7926982000-04-10 22:22:31 +0000741
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000742int
Pavel Machek4dc3b142000-02-01 17:58:41 +0000743get_scno(tcp)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000744struct tcb *tcp;
745{
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000746 long scno = 0;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000747#ifndef USE_PROCFS
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000748 int pid = tcp->pid;
Roland McGrath761b5d72002-12-15 23:58:31 +0000749#endif /* !PROCFS */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000750
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000751#ifdef LINUX
Michal Ludvig10a88d02002-10-07 14:31:00 +0000752#if defined(S390) || defined(S390X)
Roland McGrath96dc5142003-01-20 10:23:04 +0000753 if (tcp->flags & TCB_WAITEXECVE) {
754 /*
755 * When the execve system call completes successfully, the
756 * new process still has -ENOSYS (old style) or __NR_execve
757 * (new style) in gpr2. We cannot recover the scno again
758 * by disassembly, because the image that executed the
759 * syscall is gone now. Fortunately, we don't want it. We
760 * leave the flag set so that syscall_fixup can fake the
761 * result.
762 */
763 if (tcp->flags & TCB_INSYSCALL)
764 return 1;
765 /*
766 * This is the SIGTRAP after execve. We cannot try to read
767 * the system call here either.
768 */
769 tcp->flags &= ~TCB_WAITEXECVE;
770 return 0;
771 }
Roland McGrath2f924ca2003-06-26 22:23:28 +0000772
773 if (upeek(pid, PT_GPR2, &syscall_mode) < 0)
774 return -1;
775
776 if (syscall_mode != -ENOSYS) {
777 /*
778 * Since kernel version 2.5.44 the scno gets passed in gpr2.
779 */
780 scno = syscall_mode;
781 } else {
Michal Ludvig882eda82002-11-11 12:50:47 +0000782 /*
783 * Old style of "passing" the scno via the SVC instruction.
784 */
785
786 long opcode, offset_reg, tmp;
787 void * svc_addr;
788 int gpr_offset[16] = {PT_GPR0, PT_GPR1, PT_ORIGGPR2, PT_GPR3,
789 PT_GPR4, PT_GPR5, PT_GPR6, PT_GPR7,
790 PT_GPR8, PT_GPR9, PT_GPR10, PT_GPR11,
791 PT_GPR12, PT_GPR13, PT_GPR14, PT_GPR15};
Roland McGrath761b5d72002-12-15 23:58:31 +0000792
Michal Ludvig882eda82002-11-11 12:50:47 +0000793 if (upeek(pid, PT_PSWADDR, &pc) < 0)
794 return -1;
Roland McGrath96dc5142003-01-20 10:23:04 +0000795 errno = 0;
Michal Ludvig882eda82002-11-11 12:50:47 +0000796 opcode = ptrace(PTRACE_PEEKTEXT, pid, (char *)(pc-sizeof(long)), 0);
Roland McGrath96dc5142003-01-20 10:23:04 +0000797 if (errno) {
798 perror("peektext(pc-oneword)");
Michal Ludvig882eda82002-11-11 12:50:47 +0000799 return -1;
Roland McGrath96dc5142003-01-20 10:23:04 +0000800 }
Michal Ludvig882eda82002-11-11 12:50:47 +0000801
802 /*
803 * We have to check if the SVC got executed directly or via an
804 * EXECUTE instruction. In case of EXECUTE it is necessary to do
805 * instruction decoding to derive the system call number.
806 * Unfortunately the opcode sizes of EXECUTE and SVC are differently,
807 * so that this doesn't work if a SVC opcode is part of an EXECUTE
808 * opcode. Since there is no way to find out the opcode size this
809 * is the best we can do...
810 */
811
812 if ((opcode & 0xff00) == 0x0a00) {
813 /* SVC opcode */
814 scno = opcode & 0xff;
Roland McGrath761b5d72002-12-15 23:58:31 +0000815 }
Michal Ludvig882eda82002-11-11 12:50:47 +0000816 else {
817 /* SVC got executed by EXECUTE instruction */
818
819 /*
820 * Do instruction decoding of EXECUTE. If you really want to
821 * understand this, read the Principles of Operations.
822 */
823 svc_addr = (void *) (opcode & 0xfff);
824
825 tmp = 0;
826 offset_reg = (opcode & 0x000f0000) >> 16;
827 if (offset_reg && (upeek(pid, gpr_offset[offset_reg], &tmp) < 0))
828 return -1;
829 svc_addr += tmp;
830
831 tmp = 0;
832 offset_reg = (opcode & 0x0000f000) >> 12;
833 if (offset_reg && (upeek(pid, gpr_offset[offset_reg], &tmp) < 0))
834 return -1;
835 svc_addr += tmp;
836
837 scno = ptrace(PTRACE_PEEKTEXT, pid, svc_addr, 0);
838 if (errno)
839 return -1;
840#if defined(S390X)
841 scno >>= 48;
842#else
843 scno >>= 16;
844#endif
845 tmp = 0;
846 offset_reg = (opcode & 0x00f00000) >> 20;
847 if (offset_reg && (upeek(pid, gpr_offset[offset_reg], &tmp) < 0))
848 return -1;
849
850 scno = (scno | tmp) & 0xff;
851 }
852 }
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +0000853#elif defined (POWERPC)
Roland McGratheb285352003-01-14 09:59:00 +0000854 if (upeek(pid, sizeof(unsigned long)*PT_R0, &scno) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000855 return -1;
856 if (!(tcp->flags & TCB_INSYSCALL)) {
857 /* Check if we return from execve. */
858 if (scno == 0 && (tcp->flags & TCB_WAITEXECVE)) {
859 tcp->flags &= ~TCB_WAITEXECVE;
860 return 0;
861 }
862 }
863#elif defined (I386)
864 if (upeek(pid, 4*ORIG_EAX, &scno) < 0)
865 return -1;
Michal Ludvig0e035502002-09-23 15:41:01 +0000866#elif defined (X86_64)
867 if (upeek(pid, 8*ORIG_RAX, &scno) < 0)
868 return -1;
869
Roland McGrath761b5d72002-12-15 23:58:31 +0000870 if (!(tcp->flags & TCB_INSYSCALL)) {
871 static int currpers=-1;
Michal Ludvig0e035502002-09-23 15:41:01 +0000872 long val;
873
874 /* Check CS register value. On x86-64 linux it is:
875 * 0x33 for long mode (64 bit)
876 * 0x23 for compatibility mode (32 bit)
Roland McGrath761b5d72002-12-15 23:58:31 +0000877 * It takes only one ptrace and thus doesn't need
Michal Ludvig0e035502002-09-23 15:41:01 +0000878 * to be cached.
879 */
880 if (upeek(pid, 8*CS, &val) < 0)
881 return -1;
882 switch(val)
883 {
884 case 0x23: currpers = 1; break;
885 case 0x33: currpers = 0; break;
886 default:
887 fprintf(stderr, "Unknown value CS=0x%02X while "
888 "detecting personality of process "
889 "PID=%d\n", (int)val, pid);
890 currpers = current_personality;
891 break;
892 }
893#if 0
894 /* This version analyzes the opcode of a syscall instruction.
895 * (int 0x80 on i386 vs. syscall on x86-64)
896 * It works, but is too complicated.
897 */
898 unsigned long val, rip, i;
899
900 if(upeek(pid, 8*RIP, &rip)<0)
901 perror("upeek(RIP)");
Roland McGrath761b5d72002-12-15 23:58:31 +0000902
Michal Ludvig0e035502002-09-23 15:41:01 +0000903 /* sizeof(syscall) == sizeof(int 0x80) == 2 */
904 rip-=2;
905 errno = 0;
906
Roland McGrath761b5d72002-12-15 23:58:31 +0000907 call = ptrace(PTRACE_PEEKTEXT,pid,(char *)rip,0);
908 if (errno)
909 printf("ptrace_peektext failed: %s\n",
Michal Ludvig0e035502002-09-23 15:41:01 +0000910 strerror(errno));
911 switch (call & 0xffff)
912 {
913 /* x86-64: syscall = 0x0f 0x05 */
914 case 0x050f: currpers = 0; break;
915 /* i386: int 0x80 = 0xcd 0x80 */
916 case 0x80cd: currpers = 1; break;
917 default:
918 currpers = current_personality;
Roland McGrath761b5d72002-12-15 23:58:31 +0000919 fprintf(stderr,
Michal Ludvig0e035502002-09-23 15:41:01 +0000920 "Unknown syscall opcode (0x%04X) while "
921 "detecting personality of process "
922 "PID=%d\n", (int)call, pid);
923 break;
924 }
925#endif
926 if(currpers != current_personality)
927 {
928 char *names[]={"64 bit", "32 bit"};
929 set_personality(currpers);
Roland McGrath761b5d72002-12-15 23:58:31 +0000930 printf("[ Process PID=%d runs in %s mode. ]\n",
Michal Ludvig0e035502002-09-23 15:41:01 +0000931 pid, names[current_personality]);
932 }
Roland McGrath761b5d72002-12-15 23:58:31 +0000933 }
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +0000934#elif defined(IA64)
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000935# define IA64_PSR_IS ((long)1 << 34)
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +0000936 if (upeek (pid, PT_CR_IPSR, &psr) >= 0)
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000937 ia32 = (psr & IA64_PSR_IS) != 0;
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +0000938 if (!(tcp->flags & TCB_INSYSCALL)) {
939 if (ia32) {
Wichert Akkerman7b3346b2001-10-09 23:47:38 +0000940 if (upeek(pid, PT_R1, &scno) < 0) /* orig eax */
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +0000941 return -1;
942 } else {
943 if (upeek (pid, PT_R15, &scno) < 0)
944 return -1;
945 }
Roland McGrathba954762003-03-05 06:29:06 +0000946 /* Check if we return from execve. */
947 if (tcp->flags & TCB_WAITEXECVE) {
948 tcp->flags &= ~TCB_WAITEXECVE;
949 return 0;
950 }
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +0000951 } else {
952 /* syscall in progress */
953 if (upeek (pid, PT_R8, &r8) < 0)
954 return -1;
955 if (upeek (pid, PT_R10, &r10) < 0)
956 return -1;
957 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000958#elif defined (ARM)
Roland McGrath0f87c492003-06-03 23:29:04 +0000959 /*
960 * Read complete register set in one go.
961 */
962 if (ptrace(PTRACE_GETREGS, pid, NULL, (void *)&regs) == -1)
963 return -1;
964
965 /*
966 * We only need to grab the syscall number on syscall entry.
967 */
968 if (regs.ARM_ip == 0) {
969 /*
970 * Note: we only deal with only 32-bit CPUs here.
971 */
972 if (regs.ARM_cpsr & 0x20) {
973 /*
974 * Get the Thumb-mode system call number
975 */
976 scno = regs.ARM_r7;
977 } else {
978 /*
979 * Get the ARM-mode system call number
980 */
981 errno = 0;
982 scno = ptrace(PTRACE_PEEKTEXT, pid, (void *)(regs.ARM_pc - 4), NULL);
983 if (errno)
984 return -1;
985
986 if (scno == 0 && (tcp->flags & TCB_WAITEXECVE)) {
987 tcp->flags &= ~TCB_WAITEXECVE;
988 return 0;
989 }
990
991 if ((scno & 0x0ff00000) != 0x0f900000) {
992 fprintf(stderr, "syscall: unknown syscall trap 0x%08lx\n",
993 scno);
994 return -1;
995 }
996
997 /*
998 * Fixup the syscall number
999 */
1000 scno &= 0x000fffff;
1001 }
1002
1003 if (tcp->flags & TCB_INSYSCALL) {
1004 fprintf(stderr, "pid %d stray syscall entry\n", tcp->pid);
1005 tcp->flags &= ~TCB_INSYSCALL;
1006 }
1007 } else {
1008 if (!(tcp->flags & TCB_INSYSCALL)) {
1009 fprintf(stderr, "pid %d stray syscall exit\n", tcp->pid);
1010 tcp->flags |= TCB_INSYSCALL;
1011 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001012 }
1013#elif defined (M68K)
1014 if (upeek(pid, 4*PT_ORIG_D0, &scno) < 0)
1015 return -1;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001016#elif defined (MIPS)
1017 if (upeek(pid, REG_A3, &a3) < 0)
1018 return -1;
1019
1020 if(!(tcp->flags & TCB_INSYSCALL)) {
1021 if (upeek(pid, REG_V0, &scno) < 0)
1022 return -1;
1023
1024 if (scno < 0 || scno > nsyscalls) {
1025 if(a3 == 0 || a3 == -1) {
1026 if(debug)
1027 fprintf (stderr, "stray syscall exit: v0 = %ld\n", scno);
1028 return 0;
1029 }
1030 }
1031 } else {
1032 if (upeek(pid, REG_V0, &r2) < 0)
1033 return -1;
1034 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001035#elif defined (ALPHA)
1036 if (upeek(pid, REG_A3, &a3) < 0)
1037 return -1;
1038
1039 if (!(tcp->flags & TCB_INSYSCALL)) {
1040 if (upeek(pid, REG_R0, &scno) < 0)
1041 return -1;
1042
1043 /* Check if we return from execve. */
1044 if (scno == 0 && tcp->flags & TCB_WAITEXECVE) {
1045 tcp->flags &= ~TCB_WAITEXECVE;
1046 return 0;
1047 }
1048
1049 /*
1050 * Do some sanity checks to figure out if it's
1051 * really a syscall entry
1052 */
1053 if (scno < 0 || scno > nsyscalls) {
1054 if (a3 == 0 || a3 == -1) {
1055 if (debug)
1056 fprintf (stderr, "stray syscall exit: r0 = %ld\n", scno);
1057 return 0;
1058 }
1059 }
1060 }
1061 else {
1062 if (upeek(pid, REG_R0, &r0) < 0)
1063 return -1;
1064 }
1065#elif defined (SPARC)
1066 /* Everything we need is in the current register set. */
1067 if (ptrace(PTRACE_GETREGS,pid,(char *)&regs,0) < 0)
1068 return -1;
1069
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001070 /* If we are entering, then disassemble the syscall trap. */
1071 if (!(tcp->flags & TCB_INSYSCALL)) {
1072 /* Retrieve the syscall trap instruction. */
1073 errno = 0;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001074 trap = ptrace(PTRACE_PEEKTEXT,pid,(char *)regs.r_pc,0);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001075 if (errno)
1076 return -1;
1077
1078 /* Disassemble the trap to see what personality to use. */
1079 switch (trap) {
1080 case 0x91d02010:
1081 /* Linux/SPARC syscall trap. */
1082 set_personality(0);
1083 break;
Wichert Akkermandacfb6e1999-06-03 14:21:07 +00001084 case 0x91d0206d:
1085 /* Linux/SPARC64 syscall trap. */
1086 fprintf(stderr,"syscall: Linux/SPARC64 not supported yet\n");
1087 return -1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001088 case 0x91d02000:
1089 /* SunOS syscall trap. (pers 1) */
1090 fprintf(stderr,"syscall: SunOS no support\n");
1091 return -1;
1092 case 0x91d02008:
1093 /* Solaris 2.x syscall trap. (per 2) */
1094 set_personality(1);
Roland McGrath761b5d72002-12-15 23:58:31 +00001095 break;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001096 case 0x91d02009:
1097 /* NetBSD/FreeBSD syscall trap. */
1098 fprintf(stderr,"syscall: NetBSD/FreeBSD not supported\n");
1099 return -1;
1100 case 0x91d02027:
1101 /* Solaris 2.x gettimeofday */
1102 set_personality(1);
1103 break;
1104 default:
1105 /* Unknown syscall trap. */
1106 if(tcp->flags & TCB_WAITEXECVE) {
1107 tcp->flags &= ~TCB_WAITEXECVE;
1108 return 0;
1109 }
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001110 fprintf(stderr,"syscall: unknown syscall trap %08x %08x\n", trap, regs.r_pc);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001111 return -1;
1112 }
1113
1114 /* Extract the system call number from the registers. */
1115 if (trap == 0x91d02027)
1116 scno = 156;
1117 else
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001118 scno = regs.r_g1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001119 if (scno == 0) {
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001120 scno = regs.r_o0;
1121 memmove (&regs.r_o0, &regs.r_o1, 7*sizeof(regs.r_o0));
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001122 }
1123 }
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001124#elif defined(HPPA)
1125 if (upeek(pid, PT_GR20, &scno) < 0)
1126 return -1;
1127 if (!(tcp->flags & TCB_INSYSCALL)) {
1128 /* Check if we return from execve. */
1129 if ((tcp->flags & TCB_WAITEXECVE)) {
1130 tcp->flags &= ~TCB_WAITEXECVE;
1131 return 0;
1132 }
1133 }
Wichert Akkermanccef6372002-05-01 16:39:22 +00001134#elif defined(SH)
1135 /*
1136 * In the new syscall ABI, the system call number is in R3.
1137 */
1138 if (upeek(pid, 4*(REG_REG0+3), &scno) < 0)
1139 return -1;
1140
1141 if (scno < 0) {
1142 /* Odd as it may seem, a glibc bug has been known to cause
1143 glibc to issue bogus negative syscall numbers. So for
1144 our purposes, make strace print what it *should* have been */
1145 long correct_scno = (scno & 0xff);
1146 if (debug)
1147 fprintf(stderr,
Michal Ludvig53b320f2002-09-23 13:30:09 +00001148 "Detected glibc bug: bogus system call number = %ld, "
1149 "correcting to %ld\n",
Wichert Akkermanccef6372002-05-01 16:39:22 +00001150 scno,
1151 correct_scno);
1152 scno = correct_scno;
1153 }
1154
1155
1156 if (!(tcp->flags & TCB_INSYSCALL)) {
1157 /* Check if we return from execve. */
1158 if (scno == 0 && tcp->flags & TCB_WAITEXECVE) {
1159 tcp->flags &= ~TCB_WAITEXECVE;
1160 return 0;
1161 }
1162 }
Roland McGrathf5a47772003-06-26 22:40:42 +00001163#elif defined(SH64)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001164 if (upeek(pid, REG_SYSCALL, &scno) < 0)
1165 return -1;
1166 scno &= 0xFFFF;
1167
1168 if (!(tcp->flags & TCB_INSYSCALL)) {
1169 /* Check if we return from execve. */
1170 if (tcp->flags & TCB_WAITEXECVE) {
1171 tcp->flags &= ~TCB_WAITEXECVE;
1172 return 0;
1173 }
1174 }
Roland McGrathf5a47772003-06-26 22:40:42 +00001175#endif /* SH64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001176#endif /* LINUX */
1177#ifdef SUNOS4
1178 if (upeek(pid, uoff(u_arg[7]), &scno) < 0)
1179 return -1;
Wichert Akkermanccef6372002-05-01 16:39:22 +00001180#elif defined(SH)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001181 /* new syscall ABI returns result in R0 */
1182 if (upeek(pid, 4*REG_REG0, (long *)&r0) < 0)
1183 return -1;
Roland McGrathf5a47772003-06-26 22:40:42 +00001184#elif defined(SH64)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001185 /* ABI defines result returned in r9 */
1186 if (upeek(pid, REG_GENERAL(9), (long *)&r9) < 0)
1187 return -1;
1188
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001189#endif
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001190#ifdef USE_PROCFS
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001191#ifdef HAVE_PR_SYSCALL
John Hughes25299712001-03-06 10:10:06 +00001192 scno = tcp->status.PR_SYSCALL;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001193#else /* !HAVE_PR_SYSCALL */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001194#ifndef FREEBSD
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001195 scno = tcp->status.PR_WHAT;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001196#else /* FREEBSD */
1197 if (pread(tcp->pfd_reg, &regs, sizeof(regs), 0) < 0) {
1198 perror("pread");
1199 return -1;
1200 }
1201 switch (regs.r_eax) {
1202 case SYS_syscall:
1203 case SYS___syscall:
1204 pread(tcp->pfd, &scno, sizeof(scno), regs.r_esp + sizeof(int));
1205 break;
1206 default:
1207 scno = regs.r_eax;
1208 break;
1209 }
1210#endif /* FREEBSD */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001211#endif /* !HAVE_PR_SYSCALL */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001212#endif /* USE_PROCFS */
Wichert Akkerman5ae21ea2000-05-01 01:53:59 +00001213 if (!(tcp->flags & TCB_INSYSCALL))
1214 tcp->scno = scno;
Pavel Machek4dc3b142000-02-01 17:58:41 +00001215 return 1;
1216}
1217
Pavel Machek4dc3b142000-02-01 17:58:41 +00001218
1219int
1220syscall_fixup(tcp)
1221struct tcb *tcp;
1222{
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001223#ifndef USE_PROCFS
Pavel Machek4dc3b142000-02-01 17:58:41 +00001224 int pid = tcp->pid;
Roland McGrath761b5d72002-12-15 23:58:31 +00001225#else /* USE_PROCFS */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001226 int scno = tcp->scno;
Pavel Machek4dc3b142000-02-01 17:58:41 +00001227
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001228 if (!(tcp->flags & TCB_INSYSCALL)) {
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001229 if (tcp->status.PR_WHY != PR_SYSENTRY) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001230 if (
1231 scno == SYS_fork
1232#ifdef SYS_vfork
1233 || scno == SYS_vfork
1234#endif /* SYS_vfork */
John Hughes4e36a812001-04-18 15:11:51 +00001235#ifdef SYS_fork1
1236 || scno == SYS_fork1
1237#endif /* SYS_fork1 */
1238#ifdef SYS_forkall
1239 || scno == SYS_forkall
1240#endif /* SYS_forkall */
1241#ifdef SYS_rfork1
1242 || scno == SYS_rfork1
1243#endif /* SYS_fork1 */
1244#ifdef SYS_rforkall
1245 || scno == SYS_rforkall
1246#endif /* SYS_rforkall */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001247 ) {
1248 /* We are returning in the child, fake it. */
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001249 tcp->status.PR_WHY = PR_SYSENTRY;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001250 trace_syscall(tcp);
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001251 tcp->status.PR_WHY = PR_SYSEXIT;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001252 }
1253 else {
1254 fprintf(stderr, "syscall: missing entry\n");
1255 tcp->flags |= TCB_INSYSCALL;
1256 }
1257 }
1258 }
1259 else {
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001260 if (tcp->status.PR_WHY != PR_SYSEXIT) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001261 fprintf(stderr, "syscall: missing exit\n");
1262 tcp->flags &= ~TCB_INSYSCALL;
1263 }
1264 }
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001265#endif /* USE_PROCFS */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001266#ifdef SUNOS4
1267 if (!(tcp->flags & TCB_INSYSCALL)) {
1268 if (scno == 0) {
1269 fprintf(stderr, "syscall: missing entry\n");
1270 tcp->flags |= TCB_INSYSCALL;
1271 }
1272 }
1273 else {
1274 if (scno != 0) {
1275 if (debug) {
1276 /*
1277 * This happens when a signal handler
1278 * for a signal which interrupted a
1279 * a system call makes another system call.
1280 */
1281 fprintf(stderr, "syscall: missing exit\n");
1282 }
1283 tcp->flags &= ~TCB_INSYSCALL;
1284 }
1285 }
1286#endif /* SUNOS4 */
1287#ifdef LINUX
1288#if defined (I386)
1289 if (upeek(pid, 4*EAX, &eax) < 0)
1290 return -1;
1291 if (eax != -ENOSYS && !(tcp->flags & TCB_INSYSCALL)) {
1292 if (debug)
1293 fprintf(stderr, "stray syscall exit: eax = %ld\n", eax);
1294 return 0;
1295 }
Michal Ludvig0e035502002-09-23 15:41:01 +00001296#elif defined (X86_64)
1297 if (upeek(pid, 8*RAX, &rax) < 0)
1298 return -1;
1299 if (rax != -ENOSYS && !(tcp->flags & TCB_INSYSCALL)) {
1300 if (debug)
1301 fprintf(stderr, "stray syscall exit: rax = %ld\n", rax);
1302 return 0;
1303 }
Michal Ludvig10a88d02002-10-07 14:31:00 +00001304#elif defined (S390) || defined (S390X)
Wichert Akkerman12f75d12000-02-14 16:23:40 +00001305 if (upeek(pid, PT_GPR2, &gpr2) < 0)
1306 return -1;
Michal Ludvig882eda82002-11-11 12:50:47 +00001307 if (syscall_mode != -ENOSYS)
1308 syscall_mode = tcp->scno;
1309 if (gpr2 != syscall_mode && !(tcp->flags & TCB_INSYSCALL)) {
Wichert Akkerman12f75d12000-02-14 16:23:40 +00001310 if (debug)
1311 fprintf(stderr, "stray syscall exit: gpr2 = %ld\n", gpr2);
1312 return 0;
1313 }
Roland McGrath96dc5142003-01-20 10:23:04 +00001314 else if (((tcp->flags & (TCB_INSYSCALL|TCB_WAITEXECVE))
1315 == (TCB_INSYSCALL|TCB_WAITEXECVE))
1316 && (gpr2 == -ENOSYS || gpr2 == tcp->scno)) {
1317 /*
1318 * Fake a return value of zero. We leave the TCB_WAITEXECVE
1319 * flag set for the post-execve SIGTRAP to see and reset.
1320 */
1321 gpr2 = 0;
1322 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001323#elif defined (POWERPC)
1324# define SO_MASK 0x10000000
Roland McGratheb285352003-01-14 09:59:00 +00001325 if (upeek(pid, sizeof(unsigned long)*PT_CCR, &flags) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001326 return -1;
Roland McGratheb285352003-01-14 09:59:00 +00001327 if (upeek(pid, sizeof(unsigned long)*PT_R3, &result) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001328 return -1;
1329 if (flags & SO_MASK)
1330 result = -result;
1331#elif defined (M68K)
1332 if (upeek(pid, 4*PT_D0, &d0) < 0)
1333 return -1;
1334 if (d0 != -ENOSYS && !(tcp->flags & TCB_INSYSCALL)) {
1335 if (debug)
1336 fprintf(stderr, "stray syscall exit: d0 = %ld\n", d0);
1337 return 0;
1338 }
1339#elif defined (ARM)
Roland McGrath0f87c492003-06-03 23:29:04 +00001340 /*
1341 * Nothing required
1342 */
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001343#elif defined (HPPA)
1344 if (upeek(pid, PT_GR28, &r28) < 0)
1345 return -1;
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001346#elif defined(IA64)
1347 if (upeek(pid, PT_R10, &r10) < 0)
1348 return -1;
1349 if (upeek(pid, PT_R8, &r8) < 0)
1350 return -1;
1351 if (ia32 && r8 != -ENOSYS && !(tcp->flags & TCB_INSYSCALL)) {
1352 if (debug)
1353 fprintf(stderr, "stray syscall exit: r8 = %ld\n", r8);
1354 return 0;
1355 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001356#endif
1357#endif /* LINUX */
Pavel Machek4dc3b142000-02-01 17:58:41 +00001358 return 1;
1359}
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001360
Pavel Machek4dc3b142000-02-01 17:58:41 +00001361int
1362get_error(tcp)
1363struct tcb *tcp;
1364{
1365 int u_error = 0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001366#ifdef LINUX
Michal Ludvig10a88d02002-10-07 14:31:00 +00001367#if defined(S390) || defined(S390X)
Wichert Akkerman12f75d12000-02-14 16:23:40 +00001368 if (gpr2 && (unsigned) -gpr2 < nerrnos) {
1369 tcp->u_rval = -1;
1370 u_error = -gpr2;
1371 }
1372 else {
1373 tcp->u_rval = gpr2;
1374 u_error = 0;
1375 }
Michal Ludvig10a88d02002-10-07 14:31:00 +00001376#else /* !S390 && !S390X */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001377#ifdef I386
1378 if (eax < 0 && -eax < nerrnos) {
1379 tcp->u_rval = -1;
1380 u_error = -eax;
1381 }
1382 else {
1383 tcp->u_rval = eax;
1384 u_error = 0;
1385 }
1386#else /* !I386 */
Michal Ludvig0e035502002-09-23 15:41:01 +00001387#ifdef X86_64
1388 if (rax < 0 && -rax < nerrnos) {
1389 tcp->u_rval = -1;
1390 u_error = -rax;
1391 }
1392 else {
1393 tcp->u_rval = rax;
1394 u_error = 0;
1395 }
1396#else
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001397#ifdef IA64
1398 if (ia32) {
1399 int err;
1400
1401 err = (int)r8;
1402 if (err < 0 && -err < nerrnos) {
1403 tcp->u_rval = -1;
1404 u_error = -err;
1405 }
1406 else {
1407 tcp->u_rval = err;
1408 u_error = 0;
1409 }
1410 } else {
1411 if (r10) {
1412 tcp->u_rval = -1;
1413 u_error = r8;
1414 } else {
1415 tcp->u_rval = r8;
1416 u_error = 0;
1417 }
1418 }
1419#else /* !IA64 */
Wichert Akkermanf90da011999-10-31 21:15:38 +00001420#ifdef MIPS
1421 if (a3) {
1422 tcp->u_rval = -1;
1423 u_error = r2;
1424 } else {
1425 tcp->u_rval = r2;
1426 u_error = 0;
1427 }
1428#else
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001429#ifdef POWERPC
Roland McGrath190f8dd2004-01-13 10:13:44 +00001430 if (result && (unsigned long) -result < nerrnos) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001431 tcp->u_rval = -1;
1432 u_error = -result;
1433 }
1434 else {
1435 tcp->u_rval = result;
1436 u_error = 0;
1437 }
1438#else /* !POWERPC */
1439#ifdef M68K
1440 if (d0 && (unsigned) -d0 < nerrnos) {
1441 tcp->u_rval = -1;
1442 u_error = -d0;
1443 }
1444 else {
1445 tcp->u_rval = d0;
1446 u_error = 0;
1447 }
1448#else /* !M68K */
1449#ifdef ARM
Roland McGrath0f87c492003-06-03 23:29:04 +00001450 if (regs.ARM_r0 && (unsigned) -regs.ARM_r0 < nerrnos) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001451 tcp->u_rval = -1;
Roland McGrath0f87c492003-06-03 23:29:04 +00001452 u_error = -regs.ARM_r0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001453 }
1454 else {
Roland McGrath0f87c492003-06-03 23:29:04 +00001455 tcp->u_rval = regs.ARM_r0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001456 u_error = 0;
1457 }
1458#else /* !ARM */
1459#ifdef ALPHA
1460 if (a3) {
1461 tcp->u_rval = -1;
1462 u_error = r0;
1463 }
1464 else {
1465 tcp->u_rval = r0;
1466 u_error = 0;
1467 }
1468#else /* !ALPHA */
1469#ifdef SPARC
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001470 if (regs.r_psr & PSR_C) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001471 tcp->u_rval = -1;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001472 u_error = regs.r_o0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001473 }
1474 else {
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001475 tcp->u_rval = regs.r_o0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001476 u_error = 0;
1477 }
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001478#else /* !SPARC */
1479#ifdef HPPA
1480 if (r28 && (unsigned) -r28 < nerrnos) {
1481 tcp->u_rval = -1;
1482 u_error = -r28;
1483 }
1484 else {
1485 tcp->u_rval = r28;
1486 u_error = 0;
1487 }
Wichert Akkermanccef6372002-05-01 16:39:22 +00001488#else
1489#ifdef SH
1490 /* interpret R0 as return value or error number */
1491 if (r0 && (unsigned) -r0 < nerrnos) {
1492 tcp->u_rval = -1;
1493 u_error = -r0;
1494 }
1495 else {
1496 tcp->u_rval = r0;
1497 u_error = 0;
1498 }
Roland McGrathe1e584b2003-06-02 19:18:58 +00001499#else
Roland McGrathf5a47772003-06-26 22:40:42 +00001500#ifdef SH64
Roland McGrathe1e584b2003-06-02 19:18:58 +00001501 /* interpret result as return value or error number */
1502 if (r9 && (unsigned) -r9 < nerrnos) {
1503 tcp->u_rval = -1;
1504 u_error = -r9;
1505 }
1506 else {
1507 tcp->u_rval = r9;
1508 u_error = 0;
1509 }
Roland McGrathf5a47772003-06-26 22:40:42 +00001510#endif /* SH64 */
Wichert Akkermanccef6372002-05-01 16:39:22 +00001511#endif /* SH */
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001512#endif /* HPPA */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001513#endif /* SPARC */
1514#endif /* ALPHA */
1515#endif /* ARM */
1516#endif /* M68K */
1517#endif /* POWERPC */
Wichert Akkermanf90da011999-10-31 21:15:38 +00001518#endif /* MIPS */
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001519#endif /* IA64 */
Michal Ludvig0e035502002-09-23 15:41:01 +00001520#endif /* X86_64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001521#endif /* I386 */
Michal Ludvig10a88d02002-10-07 14:31:00 +00001522#endif /* S390 || S390X */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001523#endif /* LINUX */
1524#ifdef SUNOS4
1525 /* get error code from user struct */
1526 if (upeek(pid, uoff(u_error), &u_error) < 0)
1527 return -1;
1528 u_error >>= 24; /* u_error is a char */
1529
1530 /* get system call return value */
1531 if (upeek(pid, uoff(u_rval1), &tcp->u_rval) < 0)
1532 return -1;
1533#endif /* SUNOS4 */
1534#ifdef SVR4
1535#ifdef SPARC
1536 /* Judicious guessing goes a long way. */
1537 if (tcp->status.pr_reg[R_PSR] & 0x100000) {
1538 tcp->u_rval = -1;
1539 u_error = tcp->status.pr_reg[R_O0];
1540 }
1541 else {
1542 tcp->u_rval = tcp->status.pr_reg[R_O0];
1543 u_error = 0;
1544 }
1545#endif /* SPARC */
1546#ifdef I386
1547 /* Wanna know how to kill an hour single-stepping? */
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001548 if (tcp->status.PR_REG[EFL] & 0x1) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001549 tcp->u_rval = -1;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001550 u_error = tcp->status.PR_REG[EAX];
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001551 }
1552 else {
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001553 tcp->u_rval = tcp->status.PR_REG[EAX];
Wichert Akkerman16a03d22000-08-10 02:14:04 +00001554#ifdef HAVE_LONG_LONG
1555 tcp->u_lrval =
1556 ((unsigned long long) tcp->status.PR_REG[EDX] << 32) +
1557 tcp->status.PR_REG[EAX];
1558#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001559 u_error = 0;
1560 }
1561#endif /* I386 */
Michal Ludvig0e035502002-09-23 15:41:01 +00001562#ifdef X86_64
1563 /* Wanna know how to kill an hour single-stepping? */
1564 if (tcp->status.PR_REG[EFLAGS] & 0x1) {
1565 tcp->u_rval = -1;
1566 u_error = tcp->status.PR_REG[RAX];
1567 }
1568 else {
1569 tcp->u_rval = tcp->status.PR_REG[RAX];
1570 u_error = 0;
1571 }
1572#endif /* X86_64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001573#ifdef MIPS
1574 if (tcp->status.pr_reg[CTX_A3]) {
1575 tcp->u_rval = -1;
1576 u_error = tcp->status.pr_reg[CTX_V0];
1577 }
1578 else {
1579 tcp->u_rval = tcp->status.pr_reg[CTX_V0];
1580 u_error = 0;
1581 }
1582#endif /* MIPS */
1583#endif /* SVR4 */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001584#ifdef FREEBSD
1585 if (regs.r_eflags & PSL_C) {
1586 tcp->u_rval = -1;
1587 u_error = regs.r_eax;
1588 } else {
1589 tcp->u_rval = regs.r_eax;
1590 tcp->u_lrval =
1591 ((unsigned long long) regs.r_edx << 32) + regs.r_eax;
1592 u_error = 0;
1593 }
Roland McGrath761b5d72002-12-15 23:58:31 +00001594#endif /* FREEBSD */
Pavel Machek4dc3b142000-02-01 17:58:41 +00001595 tcp->u_error = u_error;
1596 return 1;
1597}
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001598
Roland McGrathb69f81b2002-12-21 23:25:18 +00001599int
1600force_result(tcp, error, rval)
1601 struct tcb *tcp;
1602 int error;
1603 long rval;
1604{
1605#ifdef LINUX
1606#if defined(S390) || defined(S390X)
1607 gpr2 = error ? -error : rval;
Roland McGrathb69f81b2002-12-21 23:25:18 +00001608 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)PT_GPR2, gpr2) < 0)
1609 return -1;
1610#else /* !S390 && !S390X */
1611#ifdef I386
1612 eax = error ? -error : rval;
1613 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(EAX * 4), eax) < 0)
1614 return -1;
1615#else /* !I386 */
1616#ifdef X86_64
1617 rax = error ? -error : rval;
1618 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(RAX * 4), rax) < 0)
1619 return -1;
1620#else
1621#ifdef IA64
1622 if (ia32) {
1623 r8 = error ? -error : rval;
1624 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(PT_R8), r8) < 0)
1625 return -1;
1626 }
1627 else {
1628 if (error) {
1629 r8 = error;
1630 r10 = -1;
1631 }
1632 else {
1633 r8 = rval;
1634 r10 = 0;
1635 }
1636 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(PT_R8), r8) < 0 ||
1637 ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(PT_R10), r10) < 0)
1638 return -1;
1639 }
1640#else /* !IA64 */
1641#ifdef MIPS
1642 if (error) {
1643 r2 = error;
1644 a3 = -1;
1645 }
1646 else {
1647 r2 = rval;
1648 a3 = 0;
1649 }
1650 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(REG_A3), a3) < 0 ||
1651 ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(REG_V0), r2) < 0)
1652 return -1;
1653#else
1654#ifdef POWERPC
Roland McGratheb285352003-01-14 09:59:00 +00001655 if (upeek(tcp->pid, sizeof(unsigned long)*PT_CCR, &flags) < 0)
Roland McGrathb69f81b2002-12-21 23:25:18 +00001656 return -1;
1657 if (error) {
1658 flags |= SO_MASK;
1659 result = error;
1660 }
1661 else {
1662 flags &= ~SO_MASK;
1663 result = rval;
1664 }
Roland McGratheb285352003-01-14 09:59:00 +00001665 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(sizeof(unsigned long)*PT_CCR), flags) < 0 ||
1666 ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(sizeof(unsigned long)*PT_R3), result) < 0)
Roland McGrathb69f81b2002-12-21 23:25:18 +00001667 return -1;
1668#else /* !POWERPC */
1669#ifdef M68K
1670 d0 = error ? -error : rval;
1671 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(4*PT_D0), d0) < 0)
1672 return -1;
1673#else /* !M68K */
1674#ifdef ARM
Roland McGrath7c051d22003-06-26 22:29:32 +00001675 regs.ARM_r0 = error ? -error : rval;
1676 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(4*0), regs.ARM_r0) < 0)
Roland McGrathb69f81b2002-12-21 23:25:18 +00001677 return -1;
1678#else /* !ARM */
1679#ifdef ALPHA
1680 if (error) {
1681 a3 = -1;
1682 r0 = error;
1683 }
1684 else {
1685 a3 = 0;
1686 r0 = rval;
1687 }
1688 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(REG_A3), a3) < 0 ||
1689 ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(REG_R0), r0) < 0)
1690 return -1;
1691#else /* !ALPHA */
1692#ifdef SPARC
1693 if (ptrace(PTRACE_GETREGS, tcp->pid, (char *)&regs, 0) < 0)
1694 return -1;
1695 if (error) {
1696 regs.r_psr |= PSR_C;
1697 regs.r_o0 = error;
1698 }
1699 else {
1700 regs.r_psr &= ~PSR_C;
1701 regs.r_o0 = rval;
1702 }
1703 if (ptrace(PTRACE_SETREGS, tcp->pid, (char *)&regs, 0) < 0)
1704 return -1;
1705#else /* !SPARC */
1706#ifdef HPPA
1707 r28 = error ? -error : rval;
1708 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(PT_GR28), r28) < 0)
1709 return -1;
1710#else
1711#ifdef SH
1712 r0 = error ? -error : rval;
1713 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)(4*REG_REG0), r0) < 0)
1714 return -1;
Roland McGrathe1e584b2003-06-02 19:18:58 +00001715#else
Roland McGrathf5a47772003-06-26 22:40:42 +00001716#ifdef SH64
Roland McGrathe1e584b2003-06-02 19:18:58 +00001717 r9 = error ? -error : rval;
1718 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)REG_GENERAL(9), r9) < 0)
1719 return -1;
Roland McGrathf5a47772003-06-26 22:40:42 +00001720#endif /* SH64 */
Roland McGrathb69f81b2002-12-21 23:25:18 +00001721#endif /* SH */
1722#endif /* HPPA */
1723#endif /* SPARC */
1724#endif /* ALPHA */
1725#endif /* ARM */
1726#endif /* M68K */
1727#endif /* POWERPC */
1728#endif /* MIPS */
1729#endif /* IA64 */
1730#endif /* X86_64 */
1731#endif /* I386 */
1732#endif /* S390 || S390X */
1733#endif /* LINUX */
1734#ifdef SUNOS4
1735 if (ptrace(PTRACE_POKEUSER, tcp->pid, (char*)uoff(u_error),
1736 error << 24) < 0 ||
1737 ptrace(PTRACE_POKEUSER, tcp->pid, (char*)uoff(u_rval1), rval) < 0)
1738 return -1;
1739#endif /* SUNOS4 */
1740#ifdef SVR4
1741 /* XXX no clue */
1742 return -1;
1743#endif /* SVR4 */
1744#ifdef FREEBSD
1745 if (pread(tcp->pfd_reg, &regs, sizeof(regs), 0) < 0) {
1746 perror("pread");
1747 return -1;
1748 }
1749 if (error) {
1750 regs.r_eflags |= PSL_C;
1751 regs.r_eax = error;
1752 }
1753 else {
1754 regs.r_eflags &= ~PSL_C;
1755 regs.r_eax = rval;
1756 }
1757 if (pwrite(tcp->pfd_reg, &regs, sizeof(regs), 0) < 0) {
1758 perror("pwrite");
1759 return -1;
1760 }
1761#endif /* FREEBSD */
1762
1763 /* All branches reach here on success (only). */
1764 tcp->u_error = error;
1765 tcp->u_rval = rval;
1766 return 0;
1767}
1768
Pavel Machek4dc3b142000-02-01 17:58:41 +00001769int syscall_enter(tcp)
1770struct tcb *tcp;
1771{
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001772#ifndef USE_PROCFS
Pavel Machek4dc3b142000-02-01 17:58:41 +00001773 int pid = tcp->pid;
Roland McGrath761b5d72002-12-15 23:58:31 +00001774#endif /* !USE_PROCFS */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001775#ifdef LINUX
Michal Ludvig10a88d02002-10-07 14:31:00 +00001776#if defined(S390) || defined(S390X)
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001777 {
1778 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001779 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1780 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001781 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001782 tcp->u_nargs = MAX_ARGS;
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001783 for (i = 0; i < tcp->u_nargs; i++) {
Michal Ludvig10a88d02002-10-07 14:31:00 +00001784 if (upeek(pid,i==0 ? PT_ORIGGPR2:PT_GPR2+i*sizeof(long), &tcp->u_arg[i]) < 0)
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001785 return -1;
1786 }
1787 }
1788#elif defined (ALPHA)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001789 {
1790 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001791 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1792 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001793 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001794 tcp->u_nargs = MAX_ARGS;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001795 for (i = 0; i < tcp->u_nargs; i++) {
Wichert Akkermanb859bea1999-04-18 22:50:50 +00001796 /* WTA: if scno is out-of-bounds this will bomb. Add range-check
1797 * for scno somewhere above here!
1798 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001799 if (upeek(pid, REG_A0+i, &tcp->u_arg[i]) < 0)
1800 return -1;
1801 }
1802 }
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001803#elif defined (IA64)
1804 {
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001805 if (!ia32) {
1806 unsigned long *out0, *rbs_end, cfm, sof, sol, i;
1807 /* be backwards compatible with kernel < 2.4.4... */
1808# ifndef PT_RBS_END
1809# define PT_RBS_END PT_AR_BSP
1810# endif
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001811
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001812 if (upeek(pid, PT_RBS_END, (long *) &rbs_end) < 0)
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001813 return -1;
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001814 if (upeek(pid, PT_CFM, (long *) &cfm) < 0)
1815 return -1;
1816
1817 sof = (cfm >> 0) & 0x7f;
1818 sol = (cfm >> 7) & 0x7f;
1819 out0 = ia64_rse_skip_regs(rbs_end, -sof + sol);
1820
1821 if (tcp->scno >= 0 && tcp->scno < nsyscalls
1822 && sysent[tcp->scno].nargs != -1)
1823 tcp->u_nargs = sysent[tcp->scno].nargs;
1824 else
1825 tcp->u_nargs = MAX_ARGS;
1826 for (i = 0; i < tcp->u_nargs; ++i) {
1827 if (umoven(tcp, (unsigned long) ia64_rse_skip_regs(out0, i),
1828 sizeof(long), (char *) &tcp->u_arg[i]) < 0)
1829 return -1;
1830 }
1831 } else {
1832 int i;
1833
1834 if (/* EBX = out0 */
1835 upeek(pid, PT_R11, (long *) &tcp->u_arg[0]) < 0
1836 /* ECX = out1 */
1837 || upeek(pid, PT_R9, (long *) &tcp->u_arg[1]) < 0
1838 /* EDX = out2 */
1839 || upeek(pid, PT_R10, (long *) &tcp->u_arg[2]) < 0
1840 /* ESI = out3 */
1841 || upeek(pid, PT_R14, (long *) &tcp->u_arg[3]) < 0
1842 /* EDI = out4 */
1843 || upeek(pid, PT_R15, (long *) &tcp->u_arg[4]) < 0
1844 /* EBP = out5 */
1845 || upeek(pid, PT_R13, (long *) &tcp->u_arg[5]) < 0)
1846 return -1;
1847
1848 for (i = 0; i < 6; ++i)
1849 /* truncate away IVE sign-extension */
1850 tcp->u_arg[i] &= 0xffffffff;
1851
1852 if (tcp->scno >= 0 && tcp->scno < nsyscalls
1853 && sysent[tcp->scno].nargs != -1)
1854 tcp->u_nargs = sysent[tcp->scno].nargs;
1855 else
1856 tcp->u_nargs = 5;
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001857 }
1858 }
Wichert Akkermanf90da011999-10-31 21:15:38 +00001859#elif defined (MIPS)
1860 {
1861 long sp;
1862 int i, nargs;
1863
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001864 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1865 nargs = tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001866 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001867 nargs = tcp->u_nargs = MAX_ARGS;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001868 if(nargs > 4) {
1869 if(upeek(pid, REG_SP, &sp) < 0)
1870 return -1;
1871 for(i = 0; i < 4; i++) {
1872 if (upeek(pid, REG_A0 + i, &tcp->u_arg[i])<0)
1873 return -1;
1874 }
1875 umoven(tcp, sp+16, (nargs-4) * sizeof(tcp->u_arg[0]),
1876 (char *)(tcp->u_arg + 4));
1877 } else {
1878 for(i = 0; i < nargs; i++) {
1879 if (upeek(pid, REG_A0 + i, &tcp->u_arg[i]) < 0)
1880 return -1;
1881 }
1882 }
1883 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001884#elif defined (POWERPC)
Roland McGrath761b5d72002-12-15 23:58:31 +00001885#ifndef PT_ORIG_R3
1886#define PT_ORIG_R3 34
1887#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001888 {
1889 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001890 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1891 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001892 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001893 tcp->u_nargs = MAX_ARGS;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001894 for (i = 0; i < tcp->u_nargs; i++) {
Roland McGratheb285352003-01-14 09:59:00 +00001895 if (upeek(pid, (i==0) ?
1896 (sizeof(unsigned long)*PT_ORIG_R3) :
1897 ((i+PT_R3)*sizeof(unsigned long)),
1898 &tcp->u_arg[i]) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001899 return -1;
1900 }
1901 }
1902#elif defined (SPARC)
1903 {
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001904 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001905
1906 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1907 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001908 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001909 tcp->u_nargs = MAX_ARGS;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001910 for (i = 0; i < tcp->u_nargs; i++)
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001911 tcp->u_arg[i] = *((&regs.r_o0) + i);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001912 }
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001913#elif defined (HPPA)
1914 {
1915 int i;
1916
1917 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1918 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001919 else
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001920 tcp->u_nargs = MAX_ARGS;
1921 for (i = 0; i < tcp->u_nargs; i++) {
1922 if (upeek(pid, PT_GR26-4*i, &tcp->u_arg[i]) < 0)
1923 return -1;
1924 }
1925 }
Roland McGrath0f87c492003-06-03 23:29:04 +00001926#elif defined(ARM)
1927 {
1928 int i;
1929
1930 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1931 tcp->u_nargs = sysent[tcp->scno].nargs;
1932 else
1933 tcp->u_nargs = MAX_ARGS;
1934 for (i = 0; i < tcp->u_nargs; i++)
1935 tcp->u_arg[i] = regs.uregs[i];
1936 }
Wichert Akkermanccef6372002-05-01 16:39:22 +00001937#elif defined(SH)
1938 {
Roland McGrath761b5d72002-12-15 23:58:31 +00001939 int i;
Wichert Akkermanccef6372002-05-01 16:39:22 +00001940 static int syscall_regs[] = {
1941 REG_REG0+4, REG_REG0+5, REG_REG0+6, REG_REG0+7,
1942 REG_REG0, REG_REG0+1, REG_REG0+2
1943 };
1944
1945 tcp->u_nargs = sysent[tcp->scno].nargs;
1946 for (i = 0; i < tcp->u_nargs; i++) {
1947 if (upeek(pid, 4*syscall_regs[i], &tcp->u_arg[i]) < 0)
1948 return -1;
1949 }
1950 }
Roland McGrathf5a47772003-06-26 22:40:42 +00001951#elif defined(SH64)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001952 {
1953 int i;
1954 /* Registers used by SH5 Linux system calls for parameters */
1955 static int syscall_regs[] = { 2, 3, 4, 5, 6, 7 };
1956
1957 /*
1958 * TODO: should also check that the number of arguments encoded
1959 * in the trap number matches the number strace expects.
1960 */
1961 /*
1962 assert(sysent[tcp->scno].nargs <
1963 sizeof(syscall_regs)/sizeof(syscall_regs[0]));
1964 */
1965
1966 tcp->u_nargs = sysent[tcp->scno].nargs;
1967 for (i = 0; i < tcp->u_nargs; i++) {
1968 if (upeek(pid, REG_GENERAL(syscall_regs[i]), &tcp->u_arg[i]) < 0)
1969 return -1;
1970 }
1971 }
1972
Michal Ludvig0e035502002-09-23 15:41:01 +00001973#elif defined(X86_64)
1974 {
1975 int i;
1976 static int argreg[SUPPORTED_PERSONALITIES][MAX_ARGS] = {
1977 {RDI,RSI,RDX,R10,R8,R9}, /* x86-64 ABI */
1978 {RBX,RCX,RDX,RDX,RSI,RDI,RBP} /* i386 ABI */
1979 };
Roland McGrath761b5d72002-12-15 23:58:31 +00001980
Michal Ludvig0e035502002-09-23 15:41:01 +00001981 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1982 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001983 else
Michal Ludvig0e035502002-09-23 15:41:01 +00001984 tcp->u_nargs = MAX_ARGS;
1985 for (i = 0; i < tcp->u_nargs; i++) {
1986 if (upeek(pid, argreg[current_personality][i]*8, &tcp->u_arg[i]) < 0)
1987 return -1;
1988 }
1989 }
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001990#else /* Other architecture (like i386) (32bits specific) */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001991 {
1992 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001993 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
1994 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00001995 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001996 tcp->u_nargs = MAX_ARGS;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001997 for (i = 0; i < tcp->u_nargs; i++) {
1998 if (upeek(pid, i*4, &tcp->u_arg[i]) < 0)
1999 return -1;
2000 }
2001 }
Roland McGrath761b5d72002-12-15 23:58:31 +00002002#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002003#endif /* LINUX */
2004#ifdef SUNOS4
2005 {
2006 int i;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002007 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
2008 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00002009 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002010 tcp->u_nargs = MAX_ARGS;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002011 for (i = 0; i < tcp->u_nargs; i++) {
2012 struct user *u;
2013
2014 if (upeek(pid, uoff(u_arg[0]) +
2015 (i*sizeof(u->u_arg[0])), &tcp->u_arg[i]) < 0)
2016 return -1;
2017 }
2018 }
2019#endif /* SUNOS4 */
2020#ifdef SVR4
2021#ifdef MIPS
2022 /*
2023 * SGI is broken: even though it has pr_sysarg, it doesn't
2024 * set them on system call entry. Get a clue.
2025 */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002026 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002027 tcp->u_nargs = sysent[tcp->scno].nargs;
2028 else
2029 tcp->u_nargs = tcp->status.pr_nsysarg;
2030 if (tcp->u_nargs > 4) {
2031 memcpy(tcp->u_arg, &tcp->status.pr_reg[CTX_A0],
2032 4*sizeof(tcp->u_arg[0]));
2033 umoven(tcp, tcp->status.pr_reg[CTX_SP] + 16,
2034 (tcp->u_nargs - 4)*sizeof(tcp->u_arg[0]), (char *) (tcp->u_arg + 4));
2035 }
2036 else {
2037 memcpy(tcp->u_arg, &tcp->status.pr_reg[CTX_A0],
2038 tcp->u_nargs*sizeof(tcp->u_arg[0]));
2039 }
John Hughes25299712001-03-06 10:10:06 +00002040#elif UNIXWARE >= 2
2041 /*
2042 * Like SGI, UnixWare doesn't set pr_sysarg until system call exit
2043 */
2044 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
2045 tcp->u_nargs = sysent[tcp->scno].nargs;
2046 else
2047 tcp->u_nargs = tcp->status.pr_lwp.pr_nsysarg;
2048 umoven(tcp, tcp->status.PR_REG[UESP] + 4,
2049 tcp->u_nargs*sizeof(tcp->u_arg[0]), (char *) tcp->u_arg);
2050#elif defined (HAVE_PR_SYSCALL)
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002051 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002052 tcp->u_nargs = sysent[tcp->scno].nargs;
2053 else
2054 tcp->u_nargs = tcp->status.pr_nsysarg;
2055 {
2056 int i;
2057 for (i = 0; i < tcp->u_nargs; i++)
2058 tcp->u_arg[i] = tcp->status.pr_sysarg[i];
2059 }
John Hughes25299712001-03-06 10:10:06 +00002060#elif defined (I386)
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002061 if (tcp->scno >= 0 && tcp->scno < nsyscalls && sysent[tcp->scno].nargs != -1)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002062 tcp->u_nargs = sysent[tcp->scno].nargs;
2063 else
2064 tcp->u_nargs = 5;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00002065 umoven(tcp, tcp->status.PR_REG[UESP] + 4,
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002066 tcp->u_nargs*sizeof(tcp->u_arg[0]), (char *) tcp->u_arg);
John Hughes25299712001-03-06 10:10:06 +00002067#else
2068 I DONT KNOW WHAT TO DO
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002069#endif /* !HAVE_PR_SYSCALL */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002070#endif /* SVR4 */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002071#ifdef FREEBSD
2072 if (tcp->scno >= 0 && tcp->scno < nsyscalls &&
2073 sysent[tcp->scno].nargs > tcp->status.val)
2074 tcp->u_nargs = sysent[tcp->scno].nargs;
Roland McGrath761b5d72002-12-15 23:58:31 +00002075 else
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002076 tcp->u_nargs = tcp->status.val;
2077 if (tcp->u_nargs < 0)
2078 tcp->u_nargs = 0;
2079 if (tcp->u_nargs > MAX_ARGS)
2080 tcp->u_nargs = MAX_ARGS;
2081 switch(regs.r_eax) {
2082 case SYS___syscall:
2083 pread(tcp->pfd, &tcp->u_arg, tcp->u_nargs * sizeof(unsigned long),
2084 regs.r_esp + sizeof(int) + sizeof(quad_t));
2085 break;
2086 case SYS_syscall:
2087 pread(tcp->pfd, &tcp->u_arg, tcp->u_nargs * sizeof(unsigned long),
2088 regs.r_esp + 2 * sizeof(int));
2089 break;
2090 default:
2091 pread(tcp->pfd, &tcp->u_arg, tcp->u_nargs * sizeof(unsigned long),
2092 regs.r_esp + sizeof(int));
2093 break;
2094 }
2095#endif /* FREEBSD */
Pavel Machek4dc3b142000-02-01 17:58:41 +00002096 return 1;
2097}
2098
2099int
2100trace_syscall(tcp)
2101struct tcb *tcp;
2102{
2103 int sys_res;
2104 struct timeval tv;
2105 int res;
2106
2107 /* Measure the exit time as early as possible to avoid errors. */
2108 if (dtime && (tcp->flags & TCB_INSYSCALL))
2109 gettimeofday(&tv, NULL);
2110
2111 res = get_scno(tcp);
2112 if (res != 1)
2113 return res;
2114
2115 res = syscall_fixup(tcp);
2116 if (res != 1)
2117 return res;
2118
2119 if (tcp->flags & TCB_INSYSCALL) {
2120 long u_error;
2121 res = get_error(tcp);
2122 if (res != 1)
2123 return res;
Pavel Machek4dc3b142000-02-01 17:58:41 +00002124
2125 internal_syscall(tcp);
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002126 if (tcp->scno >= 0 && tcp->scno < nsyscalls &&
2127 !(qual_flags[tcp->scno] & QUAL_TRACE)) {
Pavel Machek4dc3b142000-02-01 17:58:41 +00002128 tcp->flags &= ~TCB_INSYSCALL;
2129 return 0;
2130 }
2131
2132 if (tcp->flags & TCB_REPRINT) {
2133 printleader(tcp);
2134 tprintf("<... ");
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002135 if (tcp->scno >= nsyscalls || tcp->scno < 0)
Pavel Machek4dc3b142000-02-01 17:58:41 +00002136 tprintf("syscall_%lu", tcp->scno);
2137 else
2138 tprintf("%s", sysent[tcp->scno].sys_name);
2139 tprintf(" resumed> ");
2140 }
2141
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002142 if (cflag && tcp->scno < nsyscalls && tcp->scno >= 0) {
Pavel Machek4dc3b142000-02-01 17:58:41 +00002143 call_count[tcp->scno]++;
2144 if (tcp->u_error)
2145 error_count[tcp->scno]++;
2146 tv_sub(&tv, &tv, &tcp->etime);
2147#ifdef LINUX
2148 if (tv_cmp(&tv, &tcp->dtime) > 0) {
Roland McGrathee9c5b52003-11-01 22:11:22 +00002149 static struct timeval one_tick;
2150 if (one_tick.tv_usec == 0) {
2151 /* Initialize it. */
2152 struct itimerval it;
2153 memset(&it, 0, sizeof it);
2154 it.it_interval.tv_usec = 1;
2155 setitimer(ITIMER_REAL, &it, NULL);
2156 getitimer(ITIMER_REAL, &it);
2157 one_tick = it.it_interval;
2158 }
Pavel Machek4dc3b142000-02-01 17:58:41 +00002159
2160 if (tv_nz(&tcp->dtime))
2161 tv = tcp->dtime;
2162 else if (tv_cmp(&tv, &one_tick) > 0) {
2163 if (tv_cmp(&shortest, &one_tick) < 0)
2164 tv = shortest;
2165 else
2166 tv = one_tick;
2167 }
2168 }
2169#endif /* LINUX */
2170 if (tv_cmp(&tv, &shortest) < 0)
2171 shortest = tv;
2172 tv_add(&tv_count[tcp->scno],
2173 &tv_count[tcp->scno], &tv);
2174 tcp->flags &= ~TCB_INSYSCALL;
2175 return 0;
2176 }
2177
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002178 if (tcp->scno >= nsyscalls || tcp->scno < 0
Pavel Machek4dc3b142000-02-01 17:58:41 +00002179 || (qual_flags[tcp->scno] & QUAL_RAW))
2180 sys_res = printargs(tcp);
Michal Ludvig17f8fb32002-11-06 13:17:21 +00002181 else {
2182 if (not_failing_only && tcp->u_error)
Roland McGrath761b5d72002-12-15 23:58:31 +00002183 return 0; /* ignore failed syscalls */
Pavel Machek4dc3b142000-02-01 17:58:41 +00002184 sys_res = (*sysent[tcp->scno].sys_func)(tcp);
Roland McGrath761b5d72002-12-15 23:58:31 +00002185 }
Pavel Machek4dc3b142000-02-01 17:58:41 +00002186 u_error = tcp->u_error;
2187 tprintf(") ");
2188 tabto(acolumn);
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002189 if (tcp->scno >= nsyscalls || tcp->scno < 0 ||
2190 qual_flags[tcp->scno] & QUAL_RAW) {
Pavel Machek4dc3b142000-02-01 17:58:41 +00002191 if (u_error)
2192 tprintf("= -1 (errno %ld)", u_error);
2193 else
2194 tprintf("= %#lx", tcp->u_rval);
2195 }
2196 else if (!(sys_res & RVAL_NONE) && u_error) {
2197 switch (u_error) {
2198#ifdef LINUX
2199 case ERESTARTSYS:
2200 tprintf("= ? ERESTARTSYS (To be restarted)");
2201 break;
2202 case ERESTARTNOINTR:
2203 tprintf("= ? ERESTARTNOINTR (To be restarted)");
2204 break;
2205 case ERESTARTNOHAND:
2206 tprintf("= ? ERESTARTNOHAND (To be restarted)");
2207 break;
Roland McGrath9c555e72003-07-09 09:47:59 +00002208 case ERESTART_RESTARTBLOCK:
2209 tprintf("= ? ERESTART_RESTARTBLOCK (To be restarted)");
2210 break;
Pavel Machek4dc3b142000-02-01 17:58:41 +00002211#endif /* LINUX */
2212 default:
2213 tprintf("= -1 ");
Wichert Akkerman4527dae2002-03-31 19:03:29 +00002214 if (u_error < 0)
2215 tprintf("E??? (errno %ld)", u_error);
Pavel Machek4dc3b142000-02-01 17:58:41 +00002216 else if (u_error < nerrnos)
Roland McGrath761b5d72002-12-15 23:58:31 +00002217 tprintf("%s (%s)", errnoent[u_error],
2218 strerror(u_error));
Pavel Machek4dc3b142000-02-01 17:58:41 +00002219 else
Roland McGrath761b5d72002-12-15 23:58:31 +00002220 tprintf("ERRNO_%ld (%s)", u_error,
2221 strerror(u_error));
Pavel Machek4dc3b142000-02-01 17:58:41 +00002222 break;
2223 }
2224 }
2225 else {
2226 if (sys_res & RVAL_NONE)
2227 tprintf("= ?");
2228 else {
2229 switch (sys_res & RVAL_MASK) {
2230 case RVAL_HEX:
2231 tprintf("= %#lx", tcp->u_rval);
2232 break;
2233 case RVAL_OCTAL:
2234 tprintf("= %#lo", tcp->u_rval);
2235 break;
2236 case RVAL_UDECIMAL:
2237 tprintf("= %lu", tcp->u_rval);
2238 break;
2239 case RVAL_DECIMAL:
2240 tprintf("= %ld", tcp->u_rval);
2241 break;
Wichert Akkerman16a03d22000-08-10 02:14:04 +00002242#ifdef HAVE_LONG_LONG
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002243 case RVAL_LHEX:
2244 tprintf("= %#llx", tcp->u_lrval);
Wichert Akkerman16a03d22000-08-10 02:14:04 +00002245 break;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002246 case RVAL_LOCTAL:
2247 tprintf("= %#llo", tcp->u_lrval);
2248 break;
2249 case RVAL_LUDECIMAL:
2250 tprintf("= %llu", tcp->u_lrval);
2251 break;
2252 case RVAL_LDECIMAL:
2253 tprintf("= %lld", tcp->u_lrval);
2254 break;
Wichert Akkerman16a03d22000-08-10 02:14:04 +00002255#endif
Pavel Machek4dc3b142000-02-01 17:58:41 +00002256 default:
2257 fprintf(stderr,
2258 "invalid rval format\n");
2259 break;
2260 }
2261 }
2262 if ((sys_res & RVAL_STR) && tcp->auxstr)
2263 tprintf(" (%s)", tcp->auxstr);
2264 }
2265 if (dtime) {
2266 tv_sub(&tv, &tv, &tcp->etime);
2267 tprintf(" <%ld.%06ld>",
2268 (long) tv.tv_sec, (long) tv.tv_usec);
2269 }
2270 printtrailer(tcp);
2271
2272 dumpio(tcp);
2273 if (fflush(tcp->outf) == EOF)
2274 return -1;
2275 tcp->flags &= ~TCB_INSYSCALL;
2276 return 0;
2277 }
2278
2279 /* Entering system call */
2280 res = syscall_enter(tcp);
2281 if (res != 1)
2282 return res;
2283
Pavel Machekd8ae7e32000-02-01 17:17:25 +00002284 switch (tcp->scno + NR_SYSCALL_BASE) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002285#ifdef LINUX
Michal Ludvig0e035502002-09-23 15:41:01 +00002286#if !defined (ALPHA) && !defined(SPARC) && !defined(MIPS) && !defined(HPPA) && !defined(X86_64)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002287 case SYS_socketcall:
2288 decode_subcall(tcp, SYS_socket_subcall,
2289 SYS_socket_nsubcalls, deref_style);
2290 break;
2291 case SYS_ipc:
2292 decode_subcall(tcp, SYS_ipc_subcall,
2293 SYS_ipc_nsubcalls, shift_style);
2294 break;
Michal Ludvig0e035502002-09-23 15:41:01 +00002295#endif /* !ALPHA && !MIPS && !SPARC && !HPPA && !X86_64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002296#ifdef SPARC
2297 case SYS_socketcall:
2298 sparc_socket_decode (tcp);
2299 break;
2300#endif
2301#endif /* LINUX */
2302#ifdef SVR4
2303#ifdef SYS_pgrpsys_subcall
2304 case SYS_pgrpsys:
2305 decode_subcall(tcp, SYS_pgrpsys_subcall,
2306 SYS_pgrpsys_nsubcalls, shift_style);
2307 break;
2308#endif /* SYS_pgrpsys_subcall */
2309#ifdef SYS_sigcall_subcall
2310 case SYS_sigcall:
2311 decode_subcall(tcp, SYS_sigcall_subcall,
2312 SYS_sigcall_nsubcalls, mask_style);
2313 break;
2314#endif /* SYS_sigcall_subcall */
2315 case SYS_msgsys:
2316 decode_subcall(tcp, SYS_msgsys_subcall,
2317 SYS_msgsys_nsubcalls, shift_style);
2318 break;
2319 case SYS_shmsys:
2320 decode_subcall(tcp, SYS_shmsys_subcall,
2321 SYS_shmsys_nsubcalls, shift_style);
2322 break;
2323 case SYS_semsys:
2324 decode_subcall(tcp, SYS_semsys_subcall,
2325 SYS_semsys_nsubcalls, shift_style);
2326 break;
2327#if 0 /* broken */
2328 case SYS_utssys:
2329 decode_subcall(tcp, SYS_utssys_subcall,
2330 SYS_utssys_nsubcalls, shift_style);
2331 break;
2332#endif
2333 case SYS_sysfs:
2334 decode_subcall(tcp, SYS_sysfs_subcall,
2335 SYS_sysfs_nsubcalls, shift_style);
2336 break;
2337 case SYS_spcall:
2338 decode_subcall(tcp, SYS_spcall_subcall,
2339 SYS_spcall_nsubcalls, shift_style);
2340 break;
2341#ifdef SYS_context_subcall
2342 case SYS_context:
2343 decode_subcall(tcp, SYS_context_subcall,
2344 SYS_context_nsubcalls, shift_style);
2345 break;
2346#endif /* SYS_context_subcall */
Wichert Akkerman8829a551999-06-11 13:18:40 +00002347#ifdef SYS_door_subcall
2348 case SYS_door:
2349 decode_subcall(tcp, SYS_door_subcall,
2350 SYS_door_nsubcalls, door_style);
2351 break;
2352#endif /* SYS_door_subcall */
John Hughesbdf48f52001-03-06 15:08:09 +00002353#ifdef SYS_kaio_subcall
2354 case SYS_kaio:
2355 decode_subcall(tcp, SYS_kaio_subcall,
2356 SYS_kaio_nsubcalls, shift_style);
2357 break;
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00002358#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002359#endif /* SVR4 */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002360#ifdef FREEBSD
2361 case SYS_msgsys:
2362 case SYS_shmsys:
2363 case SYS_semsys:
2364 decode_subcall(tcp, 0, 0, table_style);
2365 break;
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00002366#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002367#ifdef SUNOS4
2368 case SYS_semsys:
2369 decode_subcall(tcp, SYS_semsys_subcall,
2370 SYS_semsys_nsubcalls, shift_style);
2371 break;
2372 case SYS_msgsys:
2373 decode_subcall(tcp, SYS_msgsys_subcall,
2374 SYS_msgsys_nsubcalls, shift_style);
2375 break;
2376 case SYS_shmsys:
2377 decode_subcall(tcp, SYS_shmsys_subcall,
2378 SYS_shmsys_nsubcalls, shift_style);
2379 break;
2380#endif
2381 }
2382
2383 internal_syscall(tcp);
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002384 if (tcp->scno >=0 && tcp->scno < nsyscalls && !(qual_flags[tcp->scno] & QUAL_TRACE)) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002385 tcp->flags |= TCB_INSYSCALL;
2386 return 0;
2387 }
2388
2389 if (cflag) {
2390 gettimeofday(&tcp->etime, NULL);
2391 tcp->flags |= TCB_INSYSCALL;
2392 return 0;
2393 }
2394
2395 printleader(tcp);
2396 tcp->flags &= ~TCB_REPRINT;
2397 tcp_last = tcp;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002398 if (tcp->scno >= nsyscalls || tcp->scno < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002399 tprintf("syscall_%lu(", tcp->scno);
2400 else
2401 tprintf("%s(", sysent[tcp->scno].sys_name);
Roland McGrath761b5d72002-12-15 23:58:31 +00002402 if (tcp->scno >= nsyscalls || tcp->scno < 0 ||
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002403 ((qual_flags[tcp->scno] & QUAL_RAW) && tcp->scno != SYS_exit))
2404 sys_res = printargs(tcp);
2405 else
2406 sys_res = (*sysent[tcp->scno].sys_func)(tcp);
2407 if (fflush(tcp->outf) == EOF)
2408 return -1;
2409 tcp->flags |= TCB_INSYSCALL;
2410 /* Measure the entrance time as late as possible to avoid errors. */
2411 if (dtime)
2412 gettimeofday(&tcp->etime, NULL);
2413 return sys_res;
2414}
2415
2416int
2417printargs(tcp)
2418struct tcb *tcp;
2419{
2420 if (entering(tcp)) {
2421 int i;
2422
2423 for (i = 0; i < tcp->u_nargs; i++)
2424 tprintf("%s%#lx", i ? ", " : "", tcp->u_arg[i]);
2425 }
2426 return 0;
2427}
2428
2429long
2430getrval2(tcp)
2431struct tcb *tcp;
2432{
2433 long val = -1;
2434
2435#ifdef LINUX
2436#ifdef SPARC
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00002437 struct regs regs;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002438 if (ptrace(PTRACE_GETREGS,tcp->pid,(char *)&regs,0) < 0)
2439 return -1;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00002440 val = regs.r_o1;
Roland McGrath6b1d43e2003-03-31 01:05:01 +00002441#elif defined(SH)
2442 if (upeek(tcp->pid, 4*(REG_REG0+1), &val) < 0)
2443 return -1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002444#endif /* SPARC */
Roland McGrathb4ce1762004-03-01 20:30:48 +00002445#elif defined(IA64)
2446 if (upeek(tcp->pid, PT_R9, &val) < 0)
2447 return -1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002448#endif /* LINUX */
2449
2450#ifdef SUNOS4
2451 if (upeek(tcp->pid, uoff(u_rval2), &val) < 0)
2452 return -1;
2453#endif /* SUNOS4 */
2454
2455#ifdef SVR4
2456#ifdef SPARC
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00002457 val = tcp->status.PR_REG[R_O1];
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002458#endif /* SPARC */
2459#ifdef I386
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00002460 val = tcp->status.PR_REG[EDX];
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002461#endif /* I386 */
Michal Ludvig0e035502002-09-23 15:41:01 +00002462#ifdef X86_64
2463 val = tcp->status.PR_REG[RDX];
2464#endif /* X86_64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002465#ifdef MIPS
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00002466 val = tcp->status.PR_REG[CTX_V1];
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002467#endif /* MIPS */
2468#endif /* SVR4 */
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002469#ifdef FREEBSD
2470 struct reg regs;
2471 pread(tcp->pfd_reg, &regs, sizeof(regs), 0);
2472 val = regs.r_edx;
Roland McGrath761b5d72002-12-15 23:58:31 +00002473#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002474 return val;
2475}
2476
2477/*
2478 * Apparently, indirect system calls have already be converted by ptrace(2),
2479 * so if you see "indir" this program has gone astray.
2480 */
2481int
2482sys_indir(tcp)
2483struct tcb *tcp;
2484{
2485 int i, scno, nargs;
2486
2487 if (entering(tcp)) {
2488 if ((scno = tcp->u_arg[0]) > nsyscalls) {
2489 fprintf(stderr, "Bogus syscall: %u\n", scno);
2490 return 0;
2491 }
2492 nargs = sysent[scno].nargs;
2493 tprintf("%s", sysent[scno].sys_name);
2494 for (i = 0; i < nargs; i++)
2495 tprintf(", %#lx", tcp->u_arg[i+1]);
2496 }
2497 return 0;
2498}
2499
2500static int
2501time_cmp(a, b)
2502void *a;
2503void *b;
2504{
2505 return -tv_cmp(&tv_count[*((int *) a)], &tv_count[*((int *) b)]);
2506}
2507
2508static int
2509syscall_cmp(a, b)
2510void *a;
2511void *b;
2512{
2513 return strcmp(sysent[*((int *) a)].sys_name,
2514 sysent[*((int *) b)].sys_name);
2515}
2516
2517static int
2518count_cmp(a, b)
2519void *a;
2520void *b;
2521{
2522 int m = call_count[*((int *) a)], n = call_count[*((int *) b)];
2523
2524 return (m < n) ? 1 : (m > n) ? -1 : 0;
2525}
2526
2527static int (*sortfun)();
2528static struct timeval overhead = { -1, -1 };
2529
2530void
2531set_sortby(sortby)
2532char *sortby;
2533{
2534 if (strcmp(sortby, "time") == 0)
2535 sortfun = time_cmp;
2536 else if (strcmp(sortby, "calls") == 0)
2537 sortfun = count_cmp;
2538 else if (strcmp(sortby, "name") == 0)
2539 sortfun = syscall_cmp;
2540 else if (strcmp(sortby, "nothing") == 0)
2541 sortfun = NULL;
2542 else {
2543 fprintf(stderr, "invalid sortby: `%s'\n", sortby);
2544 exit(1);
2545 }
2546}
2547
2548void set_overhead(n)
2549int n;
2550{
2551 overhead.tv_sec = n / 1000000;
2552 overhead.tv_usec = n % 1000000;
2553}
2554
2555void
2556call_summary(outf)
2557FILE *outf;
2558{
2559 int i, j;
2560 int call_cum, error_cum;
2561 struct timeval tv_cum, dtv;
2562 double percent;
2563 char *dashes = "-------------------------";
2564 char error_str[16];
2565
2566 call_cum = error_cum = tv_cum.tv_sec = tv_cum.tv_usec = 0;
2567 if (overhead.tv_sec == -1) {
2568 tv_mul(&overhead, &shortest, 8);
2569 tv_div(&overhead, &overhead, 10);
2570 }
2571 for (i = 0; i < nsyscalls; i++) {
2572 sorted_count[i] = i;
2573 if (call_count[i] == 0)
2574 continue;
2575 tv_mul(&dtv, &overhead, call_count[i]);
2576 tv_sub(&tv_count[i], &tv_count[i], &dtv);
2577 call_cum += call_count[i];
2578 error_cum += error_count[i];
2579 tv_add(&tv_cum, &tv_cum, &tv_count[i]);
2580 }
2581 if (sortfun)
2582 qsort((void *) sorted_count, nsyscalls, sizeof(int), sortfun);
2583 fprintf(outf, "%6.6s %11.11s %11.11s %9.9s %9.9s %s\n",
2584 "% time", "seconds", "usecs/call",
2585 "calls", "errors", "syscall");
2586 fprintf(outf, "%6.6s %11.11s %11.11s %9.9s %9.9s %-16.16s\n",
2587 dashes, dashes, dashes, dashes, dashes, dashes);
2588 for (i = 0; i < nsyscalls; i++) {
2589 j = sorted_count[i];
2590 if (call_count[j] == 0)
2591 continue;
2592 tv_div(&dtv, &tv_count[j], call_count[j]);
2593 if (error_count[j])
2594 sprintf(error_str, "%d", error_count[j]);
2595 else
2596 error_str[0] = '\0';
2597 percent = 100.0*tv_float(&tv_count[j])/tv_float(&tv_cum);
2598 fprintf(outf, "%6.2f %4ld.%06ld %11ld %9d %9.9s %s\n",
2599 percent, (long) tv_count[j].tv_sec,
2600 (long) tv_count[j].tv_usec,
2601 (long) 1000000 * dtv.tv_sec + dtv.tv_usec,
2602 call_count[j], error_str, sysent[j].sys_name);
2603 }
2604 fprintf(outf, "%6.6s %11.11s %11.11s %9.9s %9.9s %-16.16s\n",
2605 dashes, dashes, dashes, dashes, dashes, dashes);
2606 if (error_cum)
2607 sprintf(error_str, "%d", error_cum);
2608 else
2609 error_str[0] = '\0';
2610 fprintf(outf, "%6.6s %4ld.%06ld %11.11s %9d %9.9s %s\n",
2611 "100.00", (long) tv_cum.tv_sec, (long) tv_cum.tv_usec, "",
2612 call_cum, error_str, "total");
2613}